Mercurial > hg > truffle
annotate src/share/vm/runtime/thread.cpp @ 17845:21dd1c827123
8033696: "assert(thread != NULL) failed: just checking" due to Thread::current() and JNI pthread interaction
Reviewed-by: dholmes, dsamersoff
Contributed-by: andreas.eriksson@oracle.com
author | kevinw |
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date | Wed, 02 Apr 2014 18:40:52 +0200 |
parents | 62c54fcc0a35 |
children | 8847586c9037 |
rev | line source |
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0 | 1 /* |
7951 | 2 * Copyright (c) 1997, 2013, Oracle and/or its affiliates. All rights reserved. |
0 | 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
4 * | |
5 * This code is free software; you can redistribute it and/or modify it | |
6 * under the terms of the GNU General Public License version 2 only, as | |
7 * published by the Free Software Foundation. | |
8 * | |
9 * This code is distributed in the hope that it will be useful, but WITHOUT | |
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
12 * version 2 for more details (a copy is included in the LICENSE file that | |
13 * accompanied this code). | |
14 * | |
15 * You should have received a copy of the GNU General Public License version | |
16 * 2 along with this work; if not, write to the Free Software Foundation, | |
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. | |
18 * | |
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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20 * or visit www.oracle.com if you need additional information or have any |
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21 * questions. |
0 | 22 * |
23 */ | |
24 | |
1972 | 25 #include "precompiled.hpp" |
26 #include "classfile/classLoader.hpp" | |
27 #include "classfile/javaClasses.hpp" | |
28 #include "classfile/systemDictionary.hpp" | |
29 #include "classfile/vmSymbols.hpp" | |
30 #include "code/scopeDesc.hpp" | |
31 #include "compiler/compileBroker.hpp" | |
32 #include "interpreter/interpreter.hpp" | |
33 #include "interpreter/linkResolver.hpp" | |
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34 #include "interpreter/oopMapCache.hpp" |
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35 #include "jvmtifiles/jvmtiEnv.hpp" |
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36 #include "memory/gcLocker.inline.hpp" |
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37 #include "memory/metaspaceShared.hpp" |
1972 | 38 #include "memory/oopFactory.hpp" |
39 #include "memory/universe.inline.hpp" | |
40 #include "oops/instanceKlass.hpp" | |
41 #include "oops/objArrayOop.hpp" | |
42 #include "oops/oop.inline.hpp" | |
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43 #include "oops/symbol.hpp" |
1972 | 44 #include "prims/jvm_misc.hpp" |
45 #include "prims/jvmtiExport.hpp" | |
46 #include "prims/jvmtiThreadState.hpp" | |
47 #include "prims/privilegedStack.hpp" | |
48 #include "runtime/arguments.hpp" | |
49 #include "runtime/biasedLocking.hpp" | |
50 #include "runtime/deoptimization.hpp" | |
51 #include "runtime/fprofiler.hpp" | |
52 #include "runtime/frame.inline.hpp" | |
53 #include "runtime/init.hpp" | |
54 #include "runtime/interfaceSupport.hpp" | |
55 #include "runtime/java.hpp" | |
56 #include "runtime/javaCalls.hpp" | |
57 #include "runtime/jniPeriodicChecker.hpp" | |
58 #include "runtime/memprofiler.hpp" | |
59 #include "runtime/mutexLocker.hpp" | |
60 #include "runtime/objectMonitor.hpp" | |
61 #include "runtime/osThread.hpp" | |
62 #include "runtime/safepoint.hpp" | |
63 #include "runtime/sharedRuntime.hpp" | |
64 #include "runtime/statSampler.hpp" | |
65 #include "runtime/stubRoutines.hpp" | |
66 #include "runtime/task.hpp" | |
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67 #include "runtime/thread.inline.hpp" |
1972 | 68 #include "runtime/threadCritical.hpp" |
69 #include "runtime/threadLocalStorage.hpp" | |
70 #include "runtime/vframe.hpp" | |
71 #include "runtime/vframeArray.hpp" | |
72 #include "runtime/vframe_hp.hpp" | |
73 #include "runtime/vmThread.hpp" | |
74 #include "runtime/vm_operations.hpp" | |
75 #include "services/attachListener.hpp" | |
76 #include "services/management.hpp" | |
6197 | 77 #include "services/memTracker.hpp" |
1972 | 78 #include "services/threadService.hpp" |
10405 | 79 #include "trace/tracing.hpp" |
80 #include "trace/traceMacros.hpp" | |
1972 | 81 #include "utilities/defaultStream.hpp" |
82 #include "utilities/dtrace.hpp" | |
83 #include "utilities/events.hpp" | |
84 #include "utilities/preserveException.hpp" | |
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85 #include "utilities/macros.hpp" |
1972 | 86 #ifdef TARGET_OS_FAMILY_linux |
87 # include "os_linux.inline.hpp" | |
88 #endif | |
89 #ifdef TARGET_OS_FAMILY_solaris | |
90 # include "os_solaris.inline.hpp" | |
91 #endif | |
92 #ifdef TARGET_OS_FAMILY_windows | |
93 # include "os_windows.inline.hpp" | |
94 #endif | |
3960 | 95 #ifdef TARGET_OS_FAMILY_bsd |
96 # include "os_bsd.inline.hpp" | |
97 #endif | |
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98 #if INCLUDE_ALL_GCS |
1972 | 99 #include "gc_implementation/concurrentMarkSweep/concurrentMarkSweepThread.hpp" |
100 #include "gc_implementation/g1/concurrentMarkThread.inline.hpp" | |
101 #include "gc_implementation/parallelScavenge/pcTasks.hpp" | |
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102 #endif // INCLUDE_ALL_GCS |
1972 | 103 #ifdef COMPILER1 |
104 #include "c1/c1_Compiler.hpp" | |
105 #endif | |
106 #ifdef COMPILER2 | |
107 #include "opto/c2compiler.hpp" | |
108 #include "opto/idealGraphPrinter.hpp" | |
109 #endif | |
17780 | 110 #if INCLUDE_RTM_OPT |
111 #include "runtime/rtmLocking.hpp" | |
112 #endif | |
0 | 113 |
114 #ifdef DTRACE_ENABLED | |
115 | |
116 // Only bother with this argument setup if dtrace is available | |
117 | |
4006 | 118 #ifndef USDT2 |
0 | 119 HS_DTRACE_PROBE_DECL(hotspot, vm__init__begin); |
120 HS_DTRACE_PROBE_DECL(hotspot, vm__init__end); | |
121 HS_DTRACE_PROBE_DECL5(hotspot, thread__start, char*, intptr_t, | |
122 intptr_t, intptr_t, bool); | |
123 HS_DTRACE_PROBE_DECL5(hotspot, thread__stop, char*, intptr_t, | |
124 intptr_t, intptr_t, bool); | |
125 | |
126 #define DTRACE_THREAD_PROBE(probe, javathread) \ | |
127 { \ | |
128 ResourceMark rm(this); \ | |
129 int len = 0; \ | |
130 const char* name = (javathread)->get_thread_name(); \ | |
131 len = strlen(name); \ | |
132 HS_DTRACE_PROBE5(hotspot, thread__##probe, \ | |
133 name, len, \ | |
134 java_lang_Thread::thread_id((javathread)->threadObj()), \ | |
135 (javathread)->osthread()->thread_id(), \ | |
136 java_lang_Thread::is_daemon((javathread)->threadObj())); \ | |
137 } | |
138 | |
4006 | 139 #else /* USDT2 */ |
140 | |
141 #define HOTSPOT_THREAD_PROBE_start HOTSPOT_THREAD_PROBE_START | |
142 #define HOTSPOT_THREAD_PROBE_stop HOTSPOT_THREAD_PROBE_STOP | |
143 | |
144 #define DTRACE_THREAD_PROBE(probe, javathread) \ | |
145 { \ | |
146 ResourceMark rm(this); \ | |
147 int len = 0; \ | |
148 const char* name = (javathread)->get_thread_name(); \ | |
149 len = strlen(name); \ | |
150 HOTSPOT_THREAD_PROBE_##probe( /* probe = start, stop */ \ | |
151 (char *) name, len, \ | |
152 java_lang_Thread::thread_id((javathread)->threadObj()), \ | |
153 (uintptr_t) (javathread)->osthread()->thread_id(), \ | |
154 java_lang_Thread::is_daemon((javathread)->threadObj())); \ | |
155 } | |
156 | |
157 #endif /* USDT2 */ | |
158 | |
0 | 159 #else // ndef DTRACE_ENABLED |
160 | |
161 #define DTRACE_THREAD_PROBE(probe, javathread) | |
162 | |
163 #endif // ndef DTRACE_ENABLED | |
164 | |
6197 | 165 |
0 | 166 // Class hierarchy |
167 // - Thread | |
168 // - VMThread | |
169 // - WatcherThread | |
170 // - ConcurrentMarkSweepThread | |
171 // - JavaThread | |
172 // - CompilerThread | |
173 | |
174 // ======= Thread ======== | |
175 // Support for forcing alignment of thread objects for biased locking | |
6197 | 176 void* Thread::allocate(size_t size, bool throw_excpt, MEMFLAGS flags) { |
0 | 177 if (UseBiasedLocking) { |
178 const int alignment = markOopDesc::biased_lock_alignment; | |
179 size_t aligned_size = size + (alignment - sizeof(intptr_t)); | |
6197 | 180 void* real_malloc_addr = throw_excpt? AllocateHeap(aligned_size, flags, CURRENT_PC) |
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181 : AllocateHeap(aligned_size, flags, CURRENT_PC, |
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182 AllocFailStrategy::RETURN_NULL); |
0 | 183 void* aligned_addr = (void*) align_size_up((intptr_t) real_malloc_addr, alignment); |
184 assert(((uintptr_t) aligned_addr + (uintptr_t) size) <= | |
185 ((uintptr_t) real_malloc_addr + (uintptr_t) aligned_size), | |
186 "JavaThread alignment code overflowed allocated storage"); | |
187 if (TraceBiasedLocking) { | |
188 if (aligned_addr != real_malloc_addr) | |
189 tty->print_cr("Aligned thread " INTPTR_FORMAT " to " INTPTR_FORMAT, | |
190 real_malloc_addr, aligned_addr); | |
191 } | |
192 ((Thread*) aligned_addr)->_real_malloc_address = real_malloc_addr; | |
193 return aligned_addr; | |
194 } else { | |
6197 | 195 return throw_excpt? AllocateHeap(size, flags, CURRENT_PC) |
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196 : AllocateHeap(size, flags, CURRENT_PC, AllocFailStrategy::RETURN_NULL); |
0 | 197 } |
198 } | |
199 | |
200 void Thread::operator delete(void* p) { | |
201 if (UseBiasedLocking) { | |
202 void* real_malloc_addr = ((Thread*) p)->_real_malloc_address; | |
6197 | 203 FreeHeap(real_malloc_addr, mtThread); |
0 | 204 } else { |
6197 | 205 FreeHeap(p, mtThread); |
0 | 206 } |
207 } | |
208 | |
209 | |
210 // Base class for all threads: VMThread, WatcherThread, ConcurrentMarkSweepThread, | |
211 // JavaThread | |
212 | |
213 | |
214 Thread::Thread() { | |
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215 // stack and get_thread |
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216 set_stack_base(NULL); |
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217 set_stack_size(0); |
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218 set_self_raw_id(0); |
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219 set_lgrp_id(-1); |
0 | 220 |
221 // allocated data structures | |
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222 set_osthread(NULL); |
6197 | 223 set_resource_area(new (mtThread)ResourceArea()); |
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224 DEBUG_ONLY(_current_resource_mark = NULL;) |
6197 | 225 set_handle_area(new (mtThread) HandleArea(NULL)); |
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226 set_metadata_handles(new (ResourceObj::C_HEAP, mtClass) GrowableArray<Metadata*>(30, true)); |
0 | 227 set_active_handles(NULL); |
228 set_free_handle_block(NULL); | |
229 set_last_handle_mark(NULL); | |
230 | |
231 // This initial value ==> never claimed. | |
232 _oops_do_parity = 0; | |
233 | |
234 // the handle mark links itself to last_handle_mark | |
10135 | 235 new HandleMark(this); |
236 | |
0 | 237 // plain initialization |
238 debug_only(_owned_locks = NULL;) | |
239 debug_only(_allow_allocation_count = 0;) | |
240 NOT_PRODUCT(_allow_safepoint_count = 0;) | |
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241 NOT_PRODUCT(_skip_gcalot = false;) |
0 | 242 CHECK_UNHANDLED_OOPS_ONLY(_gc_locked_out_count = 0;) |
243 _jvmti_env_iteration_count = 0; | |
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244 set_allocated_bytes(0); |
0 | 245 _vm_operation_started_count = 0; |
246 _vm_operation_completed_count = 0; | |
247 _current_pending_monitor = NULL; | |
248 _current_pending_monitor_is_from_java = true; | |
249 _current_waiting_monitor = NULL; | |
250 _num_nested_signal = 0; | |
251 omFreeList = NULL ; | |
252 omFreeCount = 0 ; | |
253 omFreeProvision = 32 ; | |
1587 | 254 omInUseList = NULL ; |
255 omInUseCount = 0 ; | |
0 | 256 |
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257 #ifdef ASSERT |
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258 _visited_for_critical_count = false; |
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259 #endif |
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260 |
0 | 261 _SR_lock = new Monitor(Mutex::suspend_resume, "SR_lock", true); |
262 _suspend_flags = 0; | |
263 | |
264 // thread-specific hashCode stream generator state - Marsaglia shift-xor form | |
265 _hashStateX = os::random() ; | |
266 _hashStateY = 842502087 ; | |
267 _hashStateZ = 0x8767 ; // (int)(3579807591LL & 0xffff) ; | |
268 _hashStateW = 273326509 ; | |
269 | |
270 _OnTrap = 0 ; | |
271 _schedctl = NULL ; | |
272 _Stalled = 0 ; | |
273 _TypeTag = 0x2BAD ; | |
274 | |
275 // Many of the following fields are effectively final - immutable | |
276 // Note that nascent threads can't use the Native Monitor-Mutex | |
277 // construct until the _MutexEvent is initialized ... | |
278 // CONSIDER: instead of using a fixed set of purpose-dedicated ParkEvents | |
279 // we might instead use a stack of ParkEvents that we could provision on-demand. | |
280 // The stack would act as a cache to avoid calls to ParkEvent::Allocate() | |
281 // and ::Release() | |
282 _ParkEvent = ParkEvent::Allocate (this) ; | |
283 _SleepEvent = ParkEvent::Allocate (this) ; | |
284 _MutexEvent = ParkEvent::Allocate (this) ; | |
285 _MuxEvent = ParkEvent::Allocate (this) ; | |
286 | |
287 #ifdef CHECK_UNHANDLED_OOPS | |
288 if (CheckUnhandledOops) { | |
289 _unhandled_oops = new UnhandledOops(this); | |
290 } | |
291 #endif // CHECK_UNHANDLED_OOPS | |
292 #ifdef ASSERT | |
293 if (UseBiasedLocking) { | |
294 assert((((uintptr_t) this) & (markOopDesc::biased_lock_alignment - 1)) == 0, "forced alignment of thread object failed"); | |
295 assert(this == _real_malloc_address || | |
296 this == (void*) align_size_up((intptr_t) _real_malloc_address, markOopDesc::biased_lock_alignment), | |
297 "bug in forced alignment of thread objects"); | |
298 } | |
299 #endif /* ASSERT */ | |
300 } | |
301 | |
302 void Thread::initialize_thread_local_storage() { | |
303 // Note: Make sure this method only calls | |
304 // non-blocking operations. Otherwise, it might not work | |
305 // with the thread-startup/safepoint interaction. | |
306 | |
307 // During Java thread startup, safepoint code should allow this | |
308 // method to complete because it may need to allocate memory to | |
309 // store information for the new thread. | |
310 | |
311 // initialize structure dependent on thread local storage | |
312 ThreadLocalStorage::set_thread(this); | |
313 } | |
314 | |
315 void Thread::record_stack_base_and_size() { | |
316 set_stack_base(os::current_stack_base()); | |
317 set_stack_size(os::current_stack_size()); | |
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318 if (is_Java_thread()) { |
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319 ((JavaThread*) this)->set_stack_overflow_limit(); |
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320 } |
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321 // CR 7190089: on Solaris, primordial thread's stack is adjusted |
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322 // in initialize_thread(). Without the adjustment, stack size is |
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323 // incorrect if stack is set to unlimited (ulimit -s unlimited). |
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324 // So far, only Solaris has real implementation of initialize_thread(). |
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325 // |
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326 // set up any platform-specific state. |
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327 os::initialize_thread(this); |
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328 |
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329 #if INCLUDE_NMT |
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330 // record thread's native stack, stack grows downward |
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331 address stack_low_addr = stack_base() - stack_size(); |
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332 MemTracker::record_thread_stack(stack_low_addr, stack_size(), this, |
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333 CURRENT_PC); |
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334 #endif // INCLUDE_NMT |
0 | 335 } |
336 | |
337 | |
338 Thread::~Thread() { | |
339 // Reclaim the objectmonitors from the omFreeList of the moribund thread. | |
340 ObjectSynchronizer::omFlush (this) ; | |
341 | |
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342 EVENT_THREAD_DESTRUCT(this); |
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343 |
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344 // stack_base can be NULL if the thread is never started or exited before |
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345 // record_stack_base_and_size called. Although, we would like to ensure |
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346 // that all started threads do call record_stack_base_and_size(), there is |
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347 // not proper way to enforce that. |
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348 #if INCLUDE_NMT |
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349 if (_stack_base != NULL) { |
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350 address low_stack_addr = stack_base() - stack_size(); |
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351 MemTracker::release_thread_stack(low_stack_addr, stack_size(), this); |
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352 #ifdef ASSERT |
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353 set_stack_base(NULL); |
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354 #endif |
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355 } |
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356 #endif // INCLUDE_NMT |
6197 | 357 |
0 | 358 // deallocate data structures |
359 delete resource_area(); | |
360 // since the handle marks are using the handle area, we have to deallocated the root | |
361 // handle mark before deallocating the thread's handle area, | |
362 assert(last_handle_mark() != NULL, "check we have an element"); | |
10135 | 363 delete last_handle_mark(); |
364 assert(last_handle_mark() == NULL, "check we have reached the end"); | |
0 | 365 |
366 // It's possible we can encounter a null _ParkEvent, etc., in stillborn threads. | |
367 // We NULL out the fields for good hygiene. | |
368 ParkEvent::Release (_ParkEvent) ; _ParkEvent = NULL ; | |
369 ParkEvent::Release (_SleepEvent) ; _SleepEvent = NULL ; | |
370 ParkEvent::Release (_MutexEvent) ; _MutexEvent = NULL ; | |
371 ParkEvent::Release (_MuxEvent) ; _MuxEvent = NULL ; | |
372 | |
373 delete handle_area(); | |
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374 delete metadata_handles(); |
0 | 375 |
376 // osthread() can be NULL, if creation of thread failed. | |
377 if (osthread() != NULL) os::free_thread(osthread()); | |
378 | |
379 delete _SR_lock; | |
380 | |
381 // clear thread local storage if the Thread is deleting itself | |
382 if (this == Thread::current()) { | |
383 ThreadLocalStorage::set_thread(NULL); | |
384 } else { | |
385 // In the case where we're not the current thread, invalidate all the | |
386 // caches in case some code tries to get the current thread or the | |
387 // thread that was destroyed, and gets stale information. | |
388 ThreadLocalStorage::invalidate_all(); | |
389 } | |
390 CHECK_UNHANDLED_OOPS_ONLY(if (CheckUnhandledOops) delete unhandled_oops();) | |
391 } | |
392 | |
393 // NOTE: dummy function for assertion purpose. | |
394 void Thread::run() { | |
395 ShouldNotReachHere(); | |
396 } | |
397 | |
398 #ifdef ASSERT | |
399 // Private method to check for dangling thread pointer | |
400 void check_for_dangling_thread_pointer(Thread *thread) { | |
401 assert(!thread->is_Java_thread() || Thread::current() == thread || Threads_lock->owned_by_self(), | |
402 "possibility of dangling Thread pointer"); | |
403 } | |
404 #endif | |
405 | |
406 | |
407 #ifndef PRODUCT | |
408 // Tracing method for basic thread operations | |
409 void Thread::trace(const char* msg, const Thread* const thread) { | |
410 if (!TraceThreadEvents) return; | |
411 ResourceMark rm; | |
412 ThreadCritical tc; | |
413 const char *name = "non-Java thread"; | |
414 int prio = -1; | |
415 if (thread->is_Java_thread() | |
416 && !thread->is_Compiler_thread()) { | |
417 // The Threads_lock must be held to get information about | |
418 // this thread but may not be in some situations when | |
419 // tracing thread events. | |
420 bool release_Threads_lock = false; | |
421 if (!Threads_lock->owned_by_self()) { | |
422 Threads_lock->lock(); | |
423 release_Threads_lock = true; | |
424 } | |
425 JavaThread* jt = (JavaThread *)thread; | |
426 name = (char *)jt->get_thread_name(); | |
427 oop thread_oop = jt->threadObj(); | |
428 if (thread_oop != NULL) { | |
429 prio = java_lang_Thread::priority(thread_oop); | |
430 } | |
431 if (release_Threads_lock) { | |
432 Threads_lock->unlock(); | |
433 } | |
434 } | |
435 tty->print_cr("Thread::%s " INTPTR_FORMAT " [%lx] %s (prio: %d)", msg, thread, thread->osthread()->thread_id(), name, prio); | |
436 } | |
437 #endif | |
438 | |
439 | |
440 ThreadPriority Thread::get_priority(const Thread* const thread) { | |
441 trace("get priority", thread); | |
442 ThreadPriority priority; | |
443 // Can return an error! | |
444 (void)os::get_priority(thread, priority); | |
445 assert(MinPriority <= priority && priority <= MaxPriority, "non-Java priority found"); | |
446 return priority; | |
447 } | |
448 | |
449 void Thread::set_priority(Thread* thread, ThreadPriority priority) { | |
450 trace("set priority", thread); | |
451 debug_only(check_for_dangling_thread_pointer(thread);) | |
452 // Can return an error! | |
453 (void)os::set_priority(thread, priority); | |
454 } | |
455 | |
456 | |
457 void Thread::start(Thread* thread) { | |
458 trace("start", thread); | |
459 // Start is different from resume in that its safety is guaranteed by context or | |
460 // being called from a Java method synchronized on the Thread object. | |
461 if (!DisableStartThread) { | |
462 if (thread->is_Java_thread()) { | |
463 // Initialize the thread state to RUNNABLE before starting this thread. | |
464 // Can not set it after the thread started because we do not know the | |
465 // exact thread state at that time. It could be in MONITOR_WAIT or | |
466 // in SLEEPING or some other state. | |
467 java_lang_Thread::set_thread_status(((JavaThread*)thread)->threadObj(), | |
468 java_lang_Thread::RUNNABLE); | |
469 } | |
470 os::start_thread(thread); | |
471 } | |
472 } | |
473 | |
474 // Enqueue a VM_Operation to do the job for us - sometime later | |
475 void Thread::send_async_exception(oop java_thread, oop java_throwable) { | |
476 VM_ThreadStop* vm_stop = new VM_ThreadStop(java_thread, java_throwable); | |
477 VMThread::execute(vm_stop); | |
478 } | |
479 | |
480 | |
481 // | |
482 // Check if an external suspend request has completed (or has been | |
483 // cancelled). Returns true if the thread is externally suspended and | |
484 // false otherwise. | |
485 // | |
486 // The bits parameter returns information about the code path through | |
487 // the routine. Useful for debugging: | |
488 // | |
489 // set in is_ext_suspend_completed(): | |
490 // 0x00000001 - routine was entered | |
491 // 0x00000010 - routine return false at end | |
492 // 0x00000100 - thread exited (return false) | |
493 // 0x00000200 - suspend request cancelled (return false) | |
494 // 0x00000400 - thread suspended (return true) | |
495 // 0x00001000 - thread is in a suspend equivalent state (return true) | |
496 // 0x00002000 - thread is native and walkable (return true) | |
497 // 0x00004000 - thread is native_trans and walkable (needed retry) | |
498 // | |
499 // set in wait_for_ext_suspend_completion(): | |
500 // 0x00010000 - routine was entered | |
501 // 0x00020000 - suspend request cancelled before loop (return false) | |
502 // 0x00040000 - thread suspended before loop (return true) | |
503 // 0x00080000 - suspend request cancelled in loop (return false) | |
504 // 0x00100000 - thread suspended in loop (return true) | |
505 // 0x00200000 - suspend not completed during retry loop (return false) | |
506 // | |
507 | |
508 // Helper class for tracing suspend wait debug bits. | |
509 // | |
510 // 0x00000100 indicates that the target thread exited before it could | |
511 // self-suspend which is not a wait failure. 0x00000200, 0x00020000 and | |
512 // 0x00080000 each indicate a cancelled suspend request so they don't | |
513 // count as wait failures either. | |
514 #define DEBUG_FALSE_BITS (0x00000010 | 0x00200000) | |
515 | |
516 class TraceSuspendDebugBits : public StackObj { | |
517 private: | |
518 JavaThread * jt; | |
519 bool is_wait; | |
520 bool called_by_wait; // meaningful when !is_wait | |
521 uint32_t * bits; | |
522 | |
523 public: | |
524 TraceSuspendDebugBits(JavaThread *_jt, bool _is_wait, bool _called_by_wait, | |
525 uint32_t *_bits) { | |
526 jt = _jt; | |
527 is_wait = _is_wait; | |
528 called_by_wait = _called_by_wait; | |
529 bits = _bits; | |
530 } | |
531 | |
532 ~TraceSuspendDebugBits() { | |
533 if (!is_wait) { | |
534 #if 1 | |
535 // By default, don't trace bits for is_ext_suspend_completed() calls. | |
536 // That trace is very chatty. | |
537 return; | |
538 #else | |
539 if (!called_by_wait) { | |
540 // If tracing for is_ext_suspend_completed() is enabled, then only | |
541 // trace calls to it from wait_for_ext_suspend_completion() | |
542 return; | |
543 } | |
544 #endif | |
545 } | |
546 | |
547 if (AssertOnSuspendWaitFailure || TraceSuspendWaitFailures) { | |
548 if (bits != NULL && (*bits & DEBUG_FALSE_BITS) != 0) { | |
549 MutexLocker ml(Threads_lock); // needed for get_thread_name() | |
550 ResourceMark rm; | |
551 | |
552 tty->print_cr( | |
553 "Failed wait_for_ext_suspend_completion(thread=%s, debug_bits=%x)", | |
554 jt->get_thread_name(), *bits); | |
555 | |
556 guarantee(!AssertOnSuspendWaitFailure, "external suspend wait failed"); | |
557 } | |
558 } | |
559 } | |
560 }; | |
561 #undef DEBUG_FALSE_BITS | |
562 | |
563 | |
564 bool JavaThread::is_ext_suspend_completed(bool called_by_wait, int delay, uint32_t *bits) { | |
565 TraceSuspendDebugBits tsdb(this, false /* !is_wait */, called_by_wait, bits); | |
566 | |
567 bool did_trans_retry = false; // only do thread_in_native_trans retry once | |
568 bool do_trans_retry; // flag to force the retry | |
569 | |
570 *bits |= 0x00000001; | |
571 | |
572 do { | |
573 do_trans_retry = false; | |
574 | |
575 if (is_exiting()) { | |
576 // Thread is in the process of exiting. This is always checked | |
577 // first to reduce the risk of dereferencing a freed JavaThread. | |
578 *bits |= 0x00000100; | |
579 return false; | |
580 } | |
581 | |
582 if (!is_external_suspend()) { | |
583 // Suspend request is cancelled. This is always checked before | |
584 // is_ext_suspended() to reduce the risk of a rogue resume | |
585 // confusing the thread that made the suspend request. | |
586 *bits |= 0x00000200; | |
587 return false; | |
588 } | |
589 | |
590 if (is_ext_suspended()) { | |
591 // thread is suspended | |
592 *bits |= 0x00000400; | |
593 return true; | |
594 } | |
595 | |
596 // Now that we no longer do hard suspends of threads running | |
597 // native code, the target thread can be changing thread state | |
598 // while we are in this routine: | |
599 // | |
600 // _thread_in_native -> _thread_in_native_trans -> _thread_blocked | |
601 // | |
602 // We save a copy of the thread state as observed at this moment | |
603 // and make our decision about suspend completeness based on the | |
604 // copy. This closes the race where the thread state is seen as | |
605 // _thread_in_native_trans in the if-thread_blocked check, but is | |
606 // seen as _thread_blocked in if-thread_in_native_trans check. | |
607 JavaThreadState save_state = thread_state(); | |
608 | |
609 if (save_state == _thread_blocked && is_suspend_equivalent()) { | |
610 // If the thread's state is _thread_blocked and this blocking | |
611 // condition is known to be equivalent to a suspend, then we can | |
612 // consider the thread to be externally suspended. This means that | |
613 // the code that sets _thread_blocked has been modified to do | |
614 // self-suspension if the blocking condition releases. We also | |
615 // used to check for CONDVAR_WAIT here, but that is now covered by | |
616 // the _thread_blocked with self-suspension check. | |
617 // | |
618 // Return true since we wouldn't be here unless there was still an | |
619 // external suspend request. | |
620 *bits |= 0x00001000; | |
621 return true; | |
622 } else if (save_state == _thread_in_native && frame_anchor()->walkable()) { | |
623 // Threads running native code will self-suspend on native==>VM/Java | |
624 // transitions. If its stack is walkable (should always be the case | |
625 // unless this function is called before the actual java_suspend() | |
626 // call), then the wait is done. | |
627 *bits |= 0x00002000; | |
628 return true; | |
629 } else if (!called_by_wait && !did_trans_retry && | |
630 save_state == _thread_in_native_trans && | |
631 frame_anchor()->walkable()) { | |
632 // The thread is transitioning from thread_in_native to another | |
633 // thread state. check_safepoint_and_suspend_for_native_trans() | |
634 // will force the thread to self-suspend. If it hasn't gotten | |
635 // there yet we may have caught the thread in-between the native | |
636 // code check above and the self-suspend. Lucky us. If we were | |
637 // called by wait_for_ext_suspend_completion(), then it | |
638 // will be doing the retries so we don't have to. | |
639 // | |
640 // Since we use the saved thread state in the if-statement above, | |
641 // there is a chance that the thread has already transitioned to | |
642 // _thread_blocked by the time we get here. In that case, we will | |
643 // make a single unnecessary pass through the logic below. This | |
644 // doesn't hurt anything since we still do the trans retry. | |
645 | |
646 *bits |= 0x00004000; | |
647 | |
648 // Once the thread leaves thread_in_native_trans for another | |
649 // thread state, we break out of this retry loop. We shouldn't | |
650 // need this flag to prevent us from getting back here, but | |
651 // sometimes paranoia is good. | |
652 did_trans_retry = true; | |
653 | |
654 // We wait for the thread to transition to a more usable state. | |
655 for (int i = 1; i <= SuspendRetryCount; i++) { | |
656 // We used to do an "os::yield_all(i)" call here with the intention | |
657 // that yielding would increase on each retry. However, the parameter | |
658 // is ignored on Linux which means the yield didn't scale up. Waiting | |
659 // on the SR_lock below provides a much more predictable scale up for | |
660 // the delay. It also provides a simple/direct point to check for any | |
661 // safepoint requests from the VMThread | |
662 | |
663 // temporarily drops SR_lock while doing wait with safepoint check | |
664 // (if we're a JavaThread - the WatcherThread can also call this) | |
665 // and increase delay with each retry | |
666 SR_lock()->wait(!Thread::current()->is_Java_thread(), i * delay); | |
667 | |
668 // check the actual thread state instead of what we saved above | |
669 if (thread_state() != _thread_in_native_trans) { | |
670 // the thread has transitioned to another thread state so | |
671 // try all the checks (except this one) one more time. | |
672 do_trans_retry = true; | |
673 break; | |
674 } | |
675 } // end retry loop | |
676 | |
677 | |
678 } | |
679 } while (do_trans_retry); | |
680 | |
681 *bits |= 0x00000010; | |
682 return false; | |
683 } | |
684 | |
685 // | |
686 // Wait for an external suspend request to complete (or be cancelled). | |
687 // Returns true if the thread is externally suspended and false otherwise. | |
688 // | |
689 bool JavaThread::wait_for_ext_suspend_completion(int retries, int delay, | |
690 uint32_t *bits) { | |
691 TraceSuspendDebugBits tsdb(this, true /* is_wait */, | |
692 false /* !called_by_wait */, bits); | |
693 | |
694 // local flag copies to minimize SR_lock hold time | |
695 bool is_suspended; | |
696 bool pending; | |
697 uint32_t reset_bits; | |
698 | |
699 // set a marker so is_ext_suspend_completed() knows we are the caller | |
700 *bits |= 0x00010000; | |
701 | |
702 // We use reset_bits to reinitialize the bits value at the top of | |
703 // each retry loop. This allows the caller to make use of any | |
704 // unused bits for their own marking purposes. | |
705 reset_bits = *bits; | |
706 | |
707 { | |
708 MutexLockerEx ml(SR_lock(), Mutex::_no_safepoint_check_flag); | |
709 is_suspended = is_ext_suspend_completed(true /* called_by_wait */, | |
710 delay, bits); | |
711 pending = is_external_suspend(); | |
712 } | |
713 // must release SR_lock to allow suspension to complete | |
714 | |
715 if (!pending) { | |
716 // A cancelled suspend request is the only false return from | |
717 // is_ext_suspend_completed() that keeps us from entering the | |
718 // retry loop. | |
719 *bits |= 0x00020000; | |
720 return false; | |
721 } | |
722 | |
723 if (is_suspended) { | |
724 *bits |= 0x00040000; | |
725 return true; | |
726 } | |
727 | |
728 for (int i = 1; i <= retries; i++) { | |
729 *bits = reset_bits; // reinit to only track last retry | |
730 | |
731 // We used to do an "os::yield_all(i)" call here with the intention | |
732 // that yielding would increase on each retry. However, the parameter | |
733 // is ignored on Linux which means the yield didn't scale up. Waiting | |
734 // on the SR_lock below provides a much more predictable scale up for | |
735 // the delay. It also provides a simple/direct point to check for any | |
736 // safepoint requests from the VMThread | |
737 | |
738 { | |
739 MutexLocker ml(SR_lock()); | |
740 // wait with safepoint check (if we're a JavaThread - the WatcherThread | |
741 // can also call this) and increase delay with each retry | |
742 SR_lock()->wait(!Thread::current()->is_Java_thread(), i * delay); | |
743 | |
744 is_suspended = is_ext_suspend_completed(true /* called_by_wait */, | |
745 delay, bits); | |
746 | |
747 // It is possible for the external suspend request to be cancelled | |
748 // (by a resume) before the actual suspend operation is completed. | |
749 // Refresh our local copy to see if we still need to wait. | |
750 pending = is_external_suspend(); | |
751 } | |
752 | |
753 if (!pending) { | |
754 // A cancelled suspend request is the only false return from | |
755 // is_ext_suspend_completed() that keeps us from staying in the | |
756 // retry loop. | |
757 *bits |= 0x00080000; | |
758 return false; | |
759 } | |
760 | |
761 if (is_suspended) { | |
762 *bits |= 0x00100000; | |
763 return true; | |
764 } | |
765 } // end retry loop | |
766 | |
767 // thread did not suspend after all our retries | |
768 *bits |= 0x00200000; | |
769 return false; | |
770 } | |
771 | |
772 #ifndef PRODUCT | |
773 void JavaThread::record_jump(address target, address instr, const char* file, int line) { | |
774 | |
775 // This should not need to be atomic as the only way for simultaneous | |
776 // updates is via interrupts. Even then this should be rare or non-existant | |
777 // and we don't care that much anyway. | |
778 | |
779 int index = _jmp_ring_index; | |
780 _jmp_ring_index = (index + 1 ) & (jump_ring_buffer_size - 1); | |
781 _jmp_ring[index]._target = (intptr_t) target; | |
782 _jmp_ring[index]._instruction = (intptr_t) instr; | |
783 _jmp_ring[index]._file = file; | |
784 _jmp_ring[index]._line = line; | |
785 } | |
786 #endif /* PRODUCT */ | |
787 | |
788 // Called by flat profiler | |
789 // Callers have already called wait_for_ext_suspend_completion | |
790 // The assertion for that is currently too complex to put here: | |
791 bool JavaThread::profile_last_Java_frame(frame* _fr) { | |
792 bool gotframe = false; | |
793 // self suspension saves needed state. | |
794 if (has_last_Java_frame() && _anchor.walkable()) { | |
795 *_fr = pd_last_frame(); | |
796 gotframe = true; | |
797 } | |
798 return gotframe; | |
799 } | |
800 | |
801 void Thread::interrupt(Thread* thread) { | |
802 trace("interrupt", thread); | |
803 debug_only(check_for_dangling_thread_pointer(thread);) | |
804 os::interrupt(thread); | |
805 } | |
806 | |
807 bool Thread::is_interrupted(Thread* thread, bool clear_interrupted) { | |
808 trace("is_interrupted", thread); | |
809 debug_only(check_for_dangling_thread_pointer(thread);) | |
810 // Note: If clear_interrupted==false, this simply fetches and | |
811 // returns the value of the field osthread()->interrupted(). | |
812 return os::is_interrupted(thread, clear_interrupted); | |
813 } | |
814 | |
815 | |
816 // GC Support | |
817 bool Thread::claim_oops_do_par_case(int strong_roots_parity) { | |
818 jint thread_parity = _oops_do_parity; | |
819 if (thread_parity != strong_roots_parity) { | |
820 jint res = Atomic::cmpxchg(strong_roots_parity, &_oops_do_parity, thread_parity); | |
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821 if (res == thread_parity) { |
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822 return true; |
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823 } else { |
0 | 824 guarantee(res == strong_roots_parity, "Or else what?"); |
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825 assert(SharedHeap::heap()->workers()->active_workers() > 0, |
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826 "Should only fail when parallel."); |
0 | 827 return false; |
828 } | |
829 } | |
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830 assert(SharedHeap::heap()->workers()->active_workers() > 0, |
0 | 831 "Should only fail when parallel."); |
832 return false; | |
833 } | |
834 | |
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835 void Thread::oops_do(OopClosure* f, CLDToOopClosure* cld_f, CodeBlobClosure* cf) { |
0 | 836 active_handles()->oops_do(f); |
837 // Do oop for ThreadShadow | |
838 f->do_oop((oop*)&_pending_exception); | |
839 handle_area()->oops_do(f); | |
840 } | |
841 | |
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842 void Thread::nmethods_do(CodeBlobClosure* cf) { |
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843 // no nmethods in a generic thread... |
0 | 844 } |
845 | |
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846 void Thread::metadata_do(void f(Metadata*)) { |
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847 if (metadata_handles() != NULL) { |
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848 for (int i = 0; i< metadata_handles()->length(); i++) { |
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849 f(metadata_handles()->at(i)); |
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850 } |
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851 } |
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852 } |
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853 |
0 | 854 void Thread::print_on(outputStream* st) const { |
855 // get_priority assumes osthread initialized | |
856 if (osthread() != NULL) { | |
6766 | 857 int os_prio; |
858 if (os::get_native_priority(this, &os_prio) == OS_OK) { | |
859 st->print("os_prio=%d ", os_prio); | |
860 } | |
861 st->print("tid=" INTPTR_FORMAT " ", this); | |
0 | 862 osthread()->print_on(st); |
863 } | |
864 debug_only(if (WizardMode) print_owned_locks_on(st);) | |
865 } | |
866 | |
867 // Thread::print_on_error() is called by fatal error handler. Don't use | |
868 // any lock or allocate memory. | |
869 void Thread::print_on_error(outputStream* st, char* buf, int buflen) const { | |
870 if (is_VM_thread()) st->print("VMThread"); | |
871 else if (is_Compiler_thread()) st->print("CompilerThread"); | |
872 else if (is_Java_thread()) st->print("JavaThread"); | |
873 else if (is_GC_task_thread()) st->print("GCTaskThread"); | |
874 else if (is_Watcher_thread()) st->print("WatcherThread"); | |
875 else if (is_ConcurrentGC_thread()) st->print("ConcurrentGCThread"); | |
876 else st->print("Thread"); | |
877 | |
878 st->print(" [stack: " PTR_FORMAT "," PTR_FORMAT "]", | |
879 _stack_base - _stack_size, _stack_base); | |
880 | |
881 if (osthread()) { | |
882 st->print(" [id=%d]", osthread()->thread_id()); | |
883 } | |
884 } | |
885 | |
886 #ifdef ASSERT | |
887 void Thread::print_owned_locks_on(outputStream* st) const { | |
888 Monitor *cur = _owned_locks; | |
889 if (cur == NULL) { | |
890 st->print(" (no locks) "); | |
891 } else { | |
892 st->print_cr(" Locks owned:"); | |
893 while(cur) { | |
894 cur->print_on(st); | |
895 cur = cur->next(); | |
896 } | |
897 } | |
898 } | |
899 | |
900 static int ref_use_count = 0; | |
901 | |
902 bool Thread::owns_locks_but_compiled_lock() const { | |
903 for(Monitor *cur = _owned_locks; cur; cur = cur->next()) { | |
904 if (cur != Compile_lock) return true; | |
905 } | |
906 return false; | |
907 } | |
908 | |
909 | |
910 #endif | |
911 | |
912 #ifndef PRODUCT | |
913 | |
914 // The flag: potential_vm_operation notifies if this particular safepoint state could potential | |
915 // invoke the vm-thread (i.e., and oop allocation). In that case, we also have to make sure that | |
916 // no threads which allow_vm_block's are held | |
917 void Thread::check_for_valid_safepoint_state(bool potential_vm_operation) { | |
918 // Check if current thread is allowed to block at a safepoint | |
919 if (!(_allow_safepoint_count == 0)) | |
920 fatal("Possible safepoint reached by thread that does not allow it"); | |
921 if (is_Java_thread() && ((JavaThread*)this)->thread_state() != _thread_in_vm) { | |
922 fatal("LEAF method calling lock?"); | |
923 } | |
924 | |
925 #ifdef ASSERT | |
926 if (potential_vm_operation && is_Java_thread() | |
927 && !Universe::is_bootstrapping()) { | |
928 // Make sure we do not hold any locks that the VM thread also uses. | |
929 // This could potentially lead to deadlocks | |
930 for(Monitor *cur = _owned_locks; cur; cur = cur->next()) { | |
931 // Threads_lock is special, since the safepoint synchronization will not start before this is | |
932 // acquired. Hence, a JavaThread cannot be holding it at a safepoint. So is VMOperationRequest_lock, | |
933 // since it is used to transfer control between JavaThreads and the VMThread | |
934 // Do not *exclude* any locks unless you are absolutly sure it is correct. Ask someone else first! | |
935 if ( (cur->allow_vm_block() && | |
936 cur != Threads_lock && | |
937 cur != Compile_lock && // Temporary: should not be necessary when we get spearate compilation | |
938 cur != VMOperationRequest_lock && | |
939 cur != VMOperationQueue_lock) || | |
940 cur->rank() == Mutex::special) { | |
941 warning("Thread holding lock at safepoint that vm can block on: %s", cur->name()); | |
942 } | |
943 } | |
944 } | |
945 | |
946 if (GCALotAtAllSafepoints) { | |
947 // We could enter a safepoint here and thus have a gc | |
948 InterfaceSupport::check_gc_alot(); | |
949 } | |
950 #endif | |
951 } | |
952 #endif | |
953 | |
954 bool Thread::is_in_stack(address adr) const { | |
955 assert(Thread::current() == this, "is_in_stack can only be called from current thread"); | |
956 address end = os::current_stack_pointer(); | |
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957 // Allow non Java threads to call this without stack_base |
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958 if (_stack_base == NULL) return true; |
0 | 959 if (stack_base() >= adr && adr >= end) return true; |
960 | |
961 return false; | |
962 } | |
963 | |
964 | |
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965 bool Thread::is_in_usable_stack(address adr) const { |
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966 size_t stack_guard_size = os::uses_stack_guard_pages() ? (StackYellowPages + StackRedPages) * os::vm_page_size() : 0; |
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967 size_t usable_stack_size = _stack_size - stack_guard_size; |
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968 |
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969 return ((adr < stack_base()) && (adr >= stack_base() - usable_stack_size)); |
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970 } |
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971 |
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972 |
0 | 973 // We had to move these methods here, because vm threads get into ObjectSynchronizer::enter |
974 // However, there is a note in JavaThread::is_lock_owned() about the VM threads not being | |
975 // used for compilation in the future. If that change is made, the need for these methods | |
976 // should be revisited, and they should be removed if possible. | |
977 | |
978 bool Thread::is_lock_owned(address adr) const { | |
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979 return on_local_stack(adr); |
0 | 980 } |
981 | |
982 bool Thread::set_as_starting_thread() { | |
983 // NOTE: this must be called inside the main thread. | |
984 return os::create_main_thread((JavaThread*)this); | |
985 } | |
986 | |
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987 static void initialize_class(Symbol* class_name, TRAPS) { |
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988 Klass* klass = SystemDictionary::resolve_or_fail(class_name, true, CHECK); |
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989 InstanceKlass::cast(klass)->initialize(CHECK); |
0 | 990 } |
991 | |
992 | |
993 // Creates the initial ThreadGroup | |
994 static Handle create_initial_thread_group(TRAPS) { | |
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995 Klass* k = SystemDictionary::resolve_or_fail(vmSymbols::java_lang_ThreadGroup(), true, CHECK_NH); |
0 | 996 instanceKlassHandle klass (THREAD, k); |
997 | |
998 Handle system_instance = klass->allocate_instance_handle(CHECK_NH); | |
999 { | |
1000 JavaValue result(T_VOID); | |
1001 JavaCalls::call_special(&result, | |
1002 system_instance, | |
1003 klass, | |
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1004 vmSymbols::object_initializer_name(), |
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1005 vmSymbols::void_method_signature(), |
0 | 1006 CHECK_NH); |
1007 } | |
1008 Universe::set_system_thread_group(system_instance()); | |
1009 | |
1010 Handle main_instance = klass->allocate_instance_handle(CHECK_NH); | |
1011 { | |
1012 JavaValue result(T_VOID); | |
1013 Handle string = java_lang_String::create_from_str("main", CHECK_NH); | |
1014 JavaCalls::call_special(&result, | |
1015 main_instance, | |
1016 klass, | |
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1017 vmSymbols::object_initializer_name(), |
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1018 vmSymbols::threadgroup_string_void_signature(), |
0 | 1019 system_instance, |
1020 string, | |
1021 CHECK_NH); | |
1022 } | |
1023 return main_instance; | |
1024 } | |
1025 | |
1026 // Creates the initial Thread | |
1027 static oop create_initial_thread(Handle thread_group, JavaThread* thread, TRAPS) { | |
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1028 Klass* k = SystemDictionary::resolve_or_fail(vmSymbols::java_lang_Thread(), true, CHECK_NULL); |
0 | 1029 instanceKlassHandle klass (THREAD, k); |
1030 instanceHandle thread_oop = klass->allocate_instance_handle(CHECK_NULL); | |
1031 | |
1032 java_lang_Thread::set_thread(thread_oop(), thread); | |
1033 java_lang_Thread::set_priority(thread_oop(), NormPriority); | |
1034 thread->set_threadObj(thread_oop()); | |
1035 | |
1036 Handle string = java_lang_String::create_from_str("main", CHECK_NULL); | |
1037 | |
1038 JavaValue result(T_VOID); | |
1039 JavaCalls::call_special(&result, thread_oop, | |
1040 klass, | |
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1041 vmSymbols::object_initializer_name(), |
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1042 vmSymbols::threadgroup_string_void_signature(), |
0 | 1043 thread_group, |
1044 string, | |
1045 CHECK_NULL); | |
1046 return thread_oop(); | |
1047 } | |
1048 | |
1049 static void call_initializeSystemClass(TRAPS) { | |
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1050 Klass* k = SystemDictionary::resolve_or_fail(vmSymbols::java_lang_System(), true, CHECK); |
0 | 1051 instanceKlassHandle klass (THREAD, k); |
1052 | |
1053 JavaValue result(T_VOID); | |
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1054 JavaCalls::call_static(&result, klass, vmSymbols::initializeSystemClass_name(), |
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1055 vmSymbols::void_method_signature(), CHECK); |
0 | 1056 } |
1057 | |
6181 | 1058 char java_runtime_name[128] = ""; |
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1059 char java_runtime_version[128] = ""; |
6181 | 1060 |
1061 // extract the JRE name from sun.misc.Version.java_runtime_name | |
1062 static const char* get_java_runtime_name(TRAPS) { | |
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1063 Klass* k = SystemDictionary::find(vmSymbols::sun_misc_Version(), |
6181 | 1064 Handle(), Handle(), CHECK_AND_CLEAR_NULL); |
1065 fieldDescriptor fd; | |
1066 bool found = k != NULL && | |
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1067 InstanceKlass::cast(k)->find_local_field(vmSymbols::java_runtime_name_name(), |
6181 | 1068 vmSymbols::string_signature(), &fd); |
1069 if (found) { | |
1070 oop name_oop = k->java_mirror()->obj_field(fd.offset()); | |
1071 if (name_oop == NULL) | |
1072 return NULL; | |
1073 const char* name = java_lang_String::as_utf8_string(name_oop, | |
1074 java_runtime_name, | |
1075 sizeof(java_runtime_name)); | |
1076 return name; | |
1077 } else { | |
1078 return NULL; | |
1079 } | |
1080 } | |
1081 | |
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1082 // extract the JRE version from sun.misc.Version.java_runtime_version |
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1083 static const char* get_java_runtime_version(TRAPS) { |
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1084 Klass* k = SystemDictionary::find(vmSymbols::sun_misc_Version(), |
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1085 Handle(), Handle(), CHECK_AND_CLEAR_NULL); |
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1086 fieldDescriptor fd; |
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1087 bool found = k != NULL && |
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1088 InstanceKlass::cast(k)->find_local_field(vmSymbols::java_runtime_version_name(), |
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1089 vmSymbols::string_signature(), &fd); |
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1090 if (found) { |
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1091 oop name_oop = k->java_mirror()->obj_field(fd.offset()); |
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1092 if (name_oop == NULL) |
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1093 return NULL; |
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1094 const char* name = java_lang_String::as_utf8_string(name_oop, |
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1095 java_runtime_version, |
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1096 sizeof(java_runtime_version)); |
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1097 return name; |
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1098 } else { |
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1099 return NULL; |
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1100 } |
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1101 } |
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1102 |
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1103 // General purpose hook into Java code, run once when the VM is initialized. |
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1104 // The Java library method itself may be changed independently from the VM. |
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1105 static void call_postVMInitHook(TRAPS) { |
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1106 Klass* k = SystemDictionary::resolve_or_null(vmSymbols::sun_misc_PostVMInitHook(), THREAD); |
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1107 instanceKlassHandle klass (THREAD, k); |
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1108 if (klass.not_null()) { |
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1109 JavaValue result(T_VOID); |
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1110 JavaCalls::call_static(&result, klass, vmSymbols::run_method_name(), |
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1111 vmSymbols::void_method_signature(), |
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1112 CHECK); |
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1113 } |
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1114 } |
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1115 |
0 | 1116 static void reset_vm_info_property(TRAPS) { |
1117 // the vm info string | |
1118 ResourceMark rm(THREAD); | |
1119 const char *vm_info = VM_Version::vm_info_string(); | |
1120 | |
1121 // java.lang.System class | |
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1122 Klass* k = SystemDictionary::resolve_or_fail(vmSymbols::java_lang_System(), true, CHECK); |
0 | 1123 instanceKlassHandle klass (THREAD, k); |
1124 | |
1125 // setProperty arguments | |
1126 Handle key_str = java_lang_String::create_from_str("java.vm.info", CHECK); | |
1127 Handle value_str = java_lang_String::create_from_str(vm_info, CHECK); | |
1128 | |
1129 // return value | |
1130 JavaValue r(T_OBJECT); | |
1131 | |
1132 // public static String setProperty(String key, String value); | |
1133 JavaCalls::call_static(&r, | |
1134 klass, | |
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1135 vmSymbols::setProperty_name(), |
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1136 vmSymbols::string_string_string_signature(), |
0 | 1137 key_str, |
1138 value_str, | |
1139 CHECK); | |
1140 } | |
1141 | |
1142 | |
1143 void JavaThread::allocate_threadObj(Handle thread_group, char* thread_name, bool daemon, TRAPS) { | |
1144 assert(thread_group.not_null(), "thread group should be specified"); | |
1145 assert(threadObj() == NULL, "should only create Java thread object once"); | |
1146 | |
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1147 Klass* k = SystemDictionary::resolve_or_fail(vmSymbols::java_lang_Thread(), true, CHECK); |
0 | 1148 instanceKlassHandle klass (THREAD, k); |
1149 instanceHandle thread_oop = klass->allocate_instance_handle(CHECK); | |
1150 | |
1151 java_lang_Thread::set_thread(thread_oop(), this); | |
1152 java_lang_Thread::set_priority(thread_oop(), NormPriority); | |
1153 set_threadObj(thread_oop()); | |
1154 | |
1155 JavaValue result(T_VOID); | |
1156 if (thread_name != NULL) { | |
1157 Handle name = java_lang_String::create_from_str(thread_name, CHECK); | |
1158 // Thread gets assigned specified name and null target | |
1159 JavaCalls::call_special(&result, | |
1160 thread_oop, | |
1161 klass, | |
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1162 vmSymbols::object_initializer_name(), |
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1163 vmSymbols::threadgroup_string_void_signature(), |
0 | 1164 thread_group, // Argument 1 |
1165 name, // Argument 2 | |
1166 THREAD); | |
1167 } else { | |
1168 // Thread gets assigned name "Thread-nnn" and null target | |
1169 // (java.lang.Thread doesn't have a constructor taking only a ThreadGroup argument) | |
1170 JavaCalls::call_special(&result, | |
1171 thread_oop, | |
1172 klass, | |
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1173 vmSymbols::object_initializer_name(), |
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1174 vmSymbols::threadgroup_runnable_void_signature(), |
0 | 1175 thread_group, // Argument 1 |
1176 Handle(), // Argument 2 | |
1177 THREAD); | |
1178 } | |
1179 | |
1180 | |
1181 if (daemon) { | |
1182 java_lang_Thread::set_daemon(thread_oop()); | |
1183 } | |
1184 | |
1185 if (HAS_PENDING_EXCEPTION) { | |
1186 return; | |
1187 } | |
1188 | |
1142 | 1189 KlassHandle group(this, SystemDictionary::ThreadGroup_klass()); |
0 | 1190 Handle threadObj(this, this->threadObj()); |
1191 | |
1192 JavaCalls::call_special(&result, | |
1193 thread_group, | |
1194 group, | |
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1195 vmSymbols::add_method_name(), |
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1196 vmSymbols::thread_void_signature(), |
0 | 1197 threadObj, // Arg 1 |
1198 THREAD); | |
1199 | |
1200 | |
1201 } | |
1202 | |
1203 // NamedThread -- non-JavaThread subclasses with multiple | |
1204 // uniquely named instances should derive from this. | |
1205 NamedThread::NamedThread() : Thread() { | |
1206 _name = NULL; | |
1119
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1207 _processed_thread = NULL; |
0 | 1208 } |
1209 | |
1210 NamedThread::~NamedThread() { | |
1211 if (_name != NULL) { | |
6197 | 1212 FREE_C_HEAP_ARRAY(char, _name, mtThread); |
0 | 1213 _name = NULL; |
1214 } | |
1215 } | |
1216 | |
1217 void NamedThread::set_name(const char* format, ...) { | |
1218 guarantee(_name == NULL, "Only get to set name once."); | |
6197 | 1219 _name = NEW_C_HEAP_ARRAY(char, max_name_len, mtThread); |
0 | 1220 guarantee(_name != NULL, "alloc failure"); |
1221 va_list ap; | |
1222 va_start(ap, format); | |
1223 jio_vsnprintf(_name, max_name_len, format, ap); | |
1224 va_end(ap); | |
1225 } | |
1226 | |
1227 // ======= WatcherThread ======== | |
1228 | |
1229 // The watcher thread exists to simulate timer interrupts. It should | |
1230 // be replaced by an abstraction over whatever native support for | |
1231 // timer interrupts exists on the platform. | |
1232 | |
1233 WatcherThread* WatcherThread::_watcher_thread = NULL; | |
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1234 bool WatcherThread::_startable = false; |
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1235 volatile bool WatcherThread::_should_terminate = false; |
0 | 1236 |
11151 | 1237 WatcherThread::WatcherThread() : Thread(), _crash_protection(NULL) { |
0 | 1238 assert(watcher_thread() == NULL, "we can only allocate one WatcherThread"); |
1239 if (os::create_thread(this, os::watcher_thread)) { | |
1240 _watcher_thread = this; | |
1241 | |
1242 // Set the watcher thread to the highest OS priority which should not be | |
1243 // used, unless a Java thread with priority java.lang.Thread.MAX_PRIORITY | |
1244 // is created. The only normal thread using this priority is the reference | |
1245 // handler thread, which runs for very short intervals only. | |
1246 // If the VMThread's priority is not lower than the WatcherThread profiling | |
1247 // will be inaccurate. | |
1248 os::set_priority(this, MaxPriority); | |
1249 if (!DisableStartThread) { | |
1250 os::start_thread(this); | |
1251 } | |
1252 } | |
1253 } | |
1254 | |
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1255 int WatcherThread::sleep() const { |
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1256 MutexLockerEx ml(PeriodicTask_lock, Mutex::_no_safepoint_check_flag); |
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1257 |
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1258 // remaining will be zero if there are no tasks, |
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1259 // causing the WatcherThread to sleep until a task is |
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1260 // enrolled |
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1261 int remaining = PeriodicTask::time_to_wait(); |
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1262 int time_slept = 0; |
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1263 |
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1264 // we expect this to timeout - we only ever get unparked when |
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1265 // we should terminate or when a new task has been enrolled |
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1266 OSThreadWaitState osts(this->osthread(), false /* not Object.wait() */); |
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1267 |
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1268 jlong time_before_loop = os::javaTimeNanos(); |
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1269 |
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1270 for (;;) { |
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1271 bool timedout = PeriodicTask_lock->wait(Mutex::_no_safepoint_check_flag, remaining); |
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1272 jlong now = os::javaTimeNanos(); |
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1273 |
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1274 if (remaining == 0) { |
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1275 // if we didn't have any tasks we could have waited for a long time |
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1276 // consider the time_slept zero and reset time_before_loop |
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1277 time_slept = 0; |
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1278 time_before_loop = now; |
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1279 } else { |
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1280 // need to recalulate since we might have new tasks in _tasks |
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1281 time_slept = (int) ((now - time_before_loop) / 1000000); |
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1282 } |
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1283 |
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1284 // Change to task list or spurious wakeup of some kind |
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1285 if (timedout || _should_terminate) { |
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1286 break; |
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1287 } |
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1288 |
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1289 remaining = PeriodicTask::time_to_wait(); |
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1290 if (remaining == 0) { |
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1291 // Last task was just disenrolled so loop around and wait until |
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1292 // another task gets enrolled |
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1293 continue; |
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1294 } |
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1295 |
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1296 remaining -= time_slept; |
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1297 if (remaining <= 0) |
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1298 break; |
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1299 } |
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1300 |
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1301 return time_slept; |
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1302 } |
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1303 |
0 | 1304 void WatcherThread::run() { |
1305 assert(this == watcher_thread(), "just checking"); | |
1306 | |
1307 this->record_stack_base_and_size(); | |
1308 this->initialize_thread_local_storage(); | |
1309 this->set_active_handles(JNIHandleBlock::allocate_block()); | |
1310 while(!_should_terminate) { | |
1311 assert(watcher_thread() == Thread::current(), "thread consistency check"); | |
1312 assert(watcher_thread() == this, "thread consistency check"); | |
1313 | |
1314 // Calculate how long it'll be until the next PeriodicTask work | |
1315 // should be done, and sleep that amount of time. | |
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1316 int time_waited = sleep(); |
0 | 1317 |
1318 if (is_error_reported()) { | |
1319 // A fatal error has happened, the error handler(VMError::report_and_die) | |
1320 // should abort JVM after creating an error log file. However in some | |
1321 // rare cases, the error handler itself might deadlock. Here we try to | |
1322 // kill JVM if the fatal error handler fails to abort in 2 minutes. | |
1323 // | |
1324 // This code is in WatcherThread because WatcherThread wakes up | |
1325 // periodically so the fatal error handler doesn't need to do anything; | |
1326 // also because the WatcherThread is less likely to crash than other | |
1327 // threads. | |
1328 | |
1329 for (;;) { | |
1330 if (!ShowMessageBoxOnError | |
1331 && (OnError == NULL || OnError[0] == '\0') | |
1332 && Arguments::abort_hook() == NULL) { | |
1333 os::sleep(this, 2 * 60 * 1000, false); | |
1334 fdStream err(defaultStream::output_fd()); | |
1335 err.print_raw_cr("# [ timer expired, abort... ]"); | |
1336 // skip atexit/vm_exit/vm_abort hooks | |
1337 os::die(); | |
1338 } | |
1339 | |
1340 // Wake up 5 seconds later, the fatal handler may reset OnError or | |
1341 // ShowMessageBoxOnError when it is ready to abort. | |
1342 os::sleep(this, 5 * 1000, false); | |
1343 } | |
1344 } | |
1345 | |
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1346 PeriodicTask::real_time_tick(time_waited); |
0 | 1347 } |
1348 | |
1349 // Signal that it is terminated | |
1350 { | |
1351 MutexLockerEx mu(Terminator_lock, Mutex::_no_safepoint_check_flag); | |
1352 _watcher_thread = NULL; | |
1353 Terminator_lock->notify(); | |
1354 } | |
1355 | |
1356 // Thread destructor usually does this.. | |
1357 ThreadLocalStorage::set_thread(NULL); | |
1358 } | |
1359 | |
1360 void WatcherThread::start() { | |
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1361 assert(PeriodicTask_lock->owned_by_self(), "PeriodicTask_lock required"); |
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1362 |
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1363 if (watcher_thread() == NULL && _startable) { |
0 | 1364 _should_terminate = false; |
1365 // Create the single instance of WatcherThread | |
1366 new WatcherThread(); | |
1367 } | |
1368 } | |
1369 | |
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1370 void WatcherThread::make_startable() { |
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1371 assert(PeriodicTask_lock->owned_by_self(), "PeriodicTask_lock required"); |
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1372 _startable = true; |
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1373 } |
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1374 |
0 | 1375 void WatcherThread::stop() { |
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1376 { |
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1377 MutexLockerEx ml(PeriodicTask_lock, Mutex::_no_safepoint_check_flag); |
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1378 _should_terminate = true; |
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1379 OrderAccess::fence(); // ensure WatcherThread sees update in main loop |
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1380 |
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1381 WatcherThread* watcher = watcher_thread(); |
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1382 if (watcher != NULL) |
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1383 watcher->unpark(); |
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1384 } |
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1385 |
0 | 1386 // it is ok to take late safepoints here, if needed |
1387 MutexLocker mu(Terminator_lock); | |
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1388 |
0 | 1389 while(watcher_thread() != NULL) { |
1390 // This wait should make safepoint checks, wait without a timeout, | |
1391 // and wait as a suspend-equivalent condition. | |
1392 // | |
1393 // Note: If the FlatProfiler is running, then this thread is waiting | |
1394 // for the WatcherThread to terminate and the WatcherThread, via the | |
1395 // FlatProfiler task, is waiting for the external suspend request on | |
1396 // this thread to complete. wait_for_ext_suspend_completion() will | |
1397 // eventually timeout, but that takes time. Making this wait a | |
1398 // suspend-equivalent condition solves that timeout problem. | |
1399 // | |
1400 Terminator_lock->wait(!Mutex::_no_safepoint_check_flag, 0, | |
1401 Mutex::_as_suspend_equivalent_flag); | |
1402 } | |
1403 } | |
1404 | |
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1405 void WatcherThread::unpark() { |
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1406 MutexLockerEx ml(PeriodicTask_lock->owned_by_self() ? NULL : PeriodicTask_lock, Mutex::_no_safepoint_check_flag); |
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1407 PeriodicTask_lock->notify(); |
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1408 } |
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1409 |
0 | 1410 void WatcherThread::print_on(outputStream* st) const { |
1411 st->print("\"%s\" ", name()); | |
1412 Thread::print_on(st); | |
1413 st->cr(); | |
1414 } | |
1415 | |
1416 // ======= JavaThread ======== | |
1417 | |
1418 // A JavaThread is a normal Java thread | |
1419 | |
1420 void JavaThread::initialize() { | |
1421 // Initialize fields | |
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1422 |
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1423 // Set the claimed par_id to -1 (ie not claiming any par_ids) |
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1424 set_claimed_par_id(-1); |
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1425 |
0 | 1426 set_saved_exception_pc(NULL); |
1427 set_threadObj(NULL); | |
1428 _anchor.clear(); | |
1429 set_entry_point(NULL); | |
1430 set_jni_functions(jni_functions()); | |
1431 set_callee_target(NULL); | |
1432 set_vm_result(NULL); | |
1433 set_vm_result_2(NULL); | |
1434 set_vframe_array_head(NULL); | |
1435 set_vframe_array_last(NULL); | |
1436 set_deferred_locals(NULL); | |
1437 set_deopt_mark(NULL); | |
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1438 set_deopt_nmethod(NULL); |
0 | 1439 clear_must_deopt_id(); |
1440 set_monitor_chunks(NULL); | |
1441 set_next(NULL); | |
1442 set_thread_state(_thread_new); | |
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1443 #if INCLUDE_NMT |
6197 | 1444 set_recorder(NULL); |
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1445 #endif |
0 | 1446 _terminated = _not_terminated; |
1447 _privileged_stack_top = NULL; | |
1448 _array_for_gc = NULL; | |
1449 _suspend_equivalent = false; | |
1450 _in_deopt_handler = 0; | |
1451 _doing_unsafe_access = false; | |
1452 _stack_guard_state = stack_guard_unused; | |
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1453 (void)const_cast<oop&>(_exception_oop = NULL); |
0 | 1454 _exception_pc = 0; |
1455 _exception_handler_pc = 0; | |
1903 | 1456 _is_method_handle_return = 0; |
0 | 1457 _jvmti_thread_state= NULL; |
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1458 _should_post_on_exceptions_flag = JNI_FALSE; |
0 | 1459 _jvmti_get_loaded_classes_closure = NULL; |
1460 _interp_only_mode = 0; | |
1461 _special_runtime_exit_condition = _no_async_condition; | |
1462 _pending_async_exception = NULL; | |
1463 _thread_stat = NULL; | |
1464 _thread_stat = new ThreadStatistics(); | |
1465 _blocked_on_compilation = false; | |
1466 _jni_active_critical = 0; | |
1467 _do_not_unlock_if_synchronized = false; | |
1468 _cached_monitor_info = NULL; | |
1469 _parker = Parker::Allocate(this) ; | |
1470 | |
1471 #ifndef PRODUCT | |
1472 _jmp_ring_index = 0; | |
1473 for (int ji = 0 ; ji < jump_ring_buffer_size ; ji++ ) { | |
1474 record_jump(NULL, NULL, NULL, 0); | |
1475 } | |
1476 #endif /* PRODUCT */ | |
1477 | |
1478 set_thread_profiler(NULL); | |
1479 if (FlatProfiler::is_active()) { | |
1480 // This is where we would decide to either give each thread it's own profiler | |
1481 // or use one global one from FlatProfiler, | |
1482 // or up to some count of the number of profiled threads, etc. | |
1483 ThreadProfiler* pp = new ThreadProfiler(); | |
1484 pp->engage(); | |
1485 set_thread_profiler(pp); | |
1486 } | |
1487 | |
1488 // Setup safepoint state info for this thread | |
1489 ThreadSafepointState::create(this); | |
1490 | |
1491 debug_only(_java_call_counter = 0); | |
1492 | |
1493 // JVMTI PopFrame support | |
1494 _popframe_condition = popframe_inactive; | |
1495 _popframe_preserved_args = NULL; | |
1496 _popframe_preserved_args_size = 0; | |
1497 | |
1498 pd_initialize(); | |
1499 } | |
1500 | |
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1501 #if INCLUDE_ALL_GCS |
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1502 SATBMarkQueueSet JavaThread::_satb_mark_queue_set; |
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1503 DirtyCardQueueSet JavaThread::_dirty_card_queue_set; |
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1504 #endif // INCLUDE_ALL_GCS |
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1505 |
4006 | 1506 JavaThread::JavaThread(bool is_attaching_via_jni) : |
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1507 Thread() |
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1508 #if INCLUDE_ALL_GCS |
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1509 , _satb_mark_queue(&_satb_mark_queue_set), |
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1510 _dirty_card_queue(&_dirty_card_queue_set) |
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1511 #endif // INCLUDE_ALL_GCS |
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1512 { |
0 | 1513 initialize(); |
4006 | 1514 if (is_attaching_via_jni) { |
1515 _jni_attach_state = _attaching_via_jni; | |
1516 } else { | |
1517 _jni_attach_state = _not_attaching_via_jni; | |
1518 } | |
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1519 assert(deferred_card_mark().is_empty(), "Default MemRegion ctor"); |
6197 | 1520 _safepoint_visible = false; |
0 | 1521 } |
1522 | |
1523 bool JavaThread::reguard_stack(address cur_sp) { | |
1524 if (_stack_guard_state != stack_guard_yellow_disabled) { | |
1525 return true; // Stack already guarded or guard pages not needed. | |
1526 } | |
1527 | |
1528 if (register_stack_overflow()) { | |
1529 // For those architectures which have separate register and | |
1530 // memory stacks, we must check the register stack to see if | |
1531 // it has overflowed. | |
1532 return false; | |
1533 } | |
1534 | |
1535 // Java code never executes within the yellow zone: the latter is only | |
1536 // there to provoke an exception during stack banging. If java code | |
1537 // is executing there, either StackShadowPages should be larger, or | |
1538 // some exception code in c1, c2 or the interpreter isn't unwinding | |
1539 // when it should. | |
1540 guarantee(cur_sp > stack_yellow_zone_base(), "not enough space to reguard - increase StackShadowPages"); | |
1541 | |
1542 enable_stack_yellow_zone(); | |
1543 return true; | |
1544 } | |
1545 | |
1546 bool JavaThread::reguard_stack(void) { | |
1547 return reguard_stack(os::current_stack_pointer()); | |
1548 } | |
1549 | |
1550 | |
1551 void JavaThread::block_if_vm_exited() { | |
1552 if (_terminated == _vm_exited) { | |
1553 // _vm_exited is set at safepoint, and Threads_lock is never released | |
1554 // we will block here forever | |
1555 Threads_lock->lock_without_safepoint_check(); | |
1556 ShouldNotReachHere(); | |
1557 } | |
1558 } | |
1559 | |
1560 | |
1561 // Remove this ifdef when C1 is ported to the compiler interface. | |
1562 static void compiler_thread_entry(JavaThread* thread, TRAPS); | |
1563 | |
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1564 JavaThread::JavaThread(ThreadFunction entry_point, size_t stack_sz) : |
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1565 Thread() |
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1566 #if INCLUDE_ALL_GCS |
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1567 , _satb_mark_queue(&_satb_mark_queue_set), |
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1568 _dirty_card_queue(&_dirty_card_queue_set) |
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1569 #endif // INCLUDE_ALL_GCS |
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1570 { |
0 | 1571 if (TraceThreadEvents) { |
1572 tty->print_cr("creating thread %p", this); | |
1573 } | |
1574 initialize(); | |
4006 | 1575 _jni_attach_state = _not_attaching_via_jni; |
0 | 1576 set_entry_point(entry_point); |
1577 // Create the native thread itself. | |
1578 // %note runtime_23 | |
1579 os::ThreadType thr_type = os::java_thread; | |
1580 thr_type = entry_point == &compiler_thread_entry ? os::compiler_thread : | |
1581 os::java_thread; | |
1582 os::create_thread(this, thr_type, stack_sz); | |
6197 | 1583 _safepoint_visible = false; |
0 | 1584 // The _osthread may be NULL here because we ran out of memory (too many threads active). |
1585 // We need to throw and OutOfMemoryError - however we cannot do this here because the caller | |
1586 // may hold a lock and all locks must be unlocked before throwing the exception (throwing | |
1587 // the exception consists of creating the exception object & initializing it, initialization | |
1588 // will leave the VM via a JavaCall and then all locks must be unlocked). | |
1589 // | |
1590 // The thread is still suspended when we reach here. Thread must be explicit started | |
1591 // by creator! Furthermore, the thread must also explicitly be added to the Threads list | |
1592 // by calling Threads:add. The reason why this is not done here, is because the thread | |
1593 // object must be fully initialized (take a look at JVM_Start) | |
1594 } | |
1595 | |
1596 JavaThread::~JavaThread() { | |
1597 if (TraceThreadEvents) { | |
1598 tty->print_cr("terminate thread %p", this); | |
1599 } | |
1600 | |
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1601 // By now, this thread should already be invisible to safepoint, |
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1602 // and its per-thread recorder also collected. |
6197 | 1603 assert(!is_safepoint_visible(), "wrong state"); |
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1604 #if INCLUDE_NMT |
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1605 assert(get_recorder() == NULL, "Already collected"); |
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1606 #endif // INCLUDE_NMT |
6197 | 1607 |
0 | 1608 // JSR166 -- return the parker to the free list |
1609 Parker::Release(_parker); | |
1610 _parker = NULL ; | |
1611 | |
1612 // Free any remaining previous UnrollBlock | |
1613 vframeArray* old_array = vframe_array_last(); | |
1614 | |
1615 if (old_array != NULL) { | |
1616 Deoptimization::UnrollBlock* old_info = old_array->unroll_block(); | |
1617 old_array->set_unroll_block(NULL); | |
1618 delete old_info; | |
1619 delete old_array; | |
1620 } | |
1621 | |
1622 GrowableArray<jvmtiDeferredLocalVariableSet*>* deferred = deferred_locals(); | |
1623 if (deferred != NULL) { | |
1624 // This can only happen if thread is destroyed before deoptimization occurs. | |
1625 assert(deferred->length() != 0, "empty array!"); | |
1626 do { | |
1627 jvmtiDeferredLocalVariableSet* dlv = deferred->at(0); | |
1628 deferred->remove_at(0); | |
1629 // individual jvmtiDeferredLocalVariableSet are CHeapObj's | |
1630 delete dlv; | |
1631 } while (deferred->length() != 0); | |
1632 delete deferred; | |
1633 } | |
1634 | |
1635 // All Java related clean up happens in exit | |
1636 ThreadSafepointState::destroy(this); | |
1637 if (_thread_profiler != NULL) delete _thread_profiler; | |
1638 if (_thread_stat != NULL) delete _thread_stat; | |
1639 } | |
1640 | |
1641 | |
1642 // The first routine called by a new Java thread | |
1643 void JavaThread::run() { | |
1644 // initialize thread-local alloc buffer related fields | |
1645 this->initialize_tlab(); | |
1646 | |
1647 // used to test validitity of stack trace backs | |
1648 this->record_base_of_stack_pointer(); | |
1649 | |
1650 // Record real stack base and size. | |
1651 this->record_stack_base_and_size(); | |
1652 | |
1653 // Initialize thread local storage; set before calling MutexLocker | |
1654 this->initialize_thread_local_storage(); | |
1655 | |
1656 this->create_stack_guard_pages(); | |
1657 | |
1681
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1658 this->cache_global_variables(); |
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1659 |
0 | 1660 // Thread is now sufficient initialized to be handled by the safepoint code as being |
1661 // in the VM. Change thread state from _thread_new to _thread_in_vm | |
1662 ThreadStateTransition::transition_and_fence(this, _thread_new, _thread_in_vm); | |
1663 | |
1664 assert(JavaThread::current() == this, "sanity check"); | |
1665 assert(!Thread::current()->owns_locks(), "sanity check"); | |
1666 | |
1667 DTRACE_THREAD_PROBE(start, this); | |
1668 | |
1669 // This operation might block. We call that after all safepoint checks for a new thread has | |
1670 // been completed. | |
1671 this->set_active_handles(JNIHandleBlock::allocate_block()); | |
1672 | |
1673 if (JvmtiExport::should_post_thread_life()) { | |
1674 JvmtiExport::post_thread_start(this); | |
1675 } | |
1676 | |
10405 | 1677 EventThreadStart event; |
1678 if (event.should_commit()) { | |
1679 event.set_javalangthread(java_lang_Thread::thread_id(this->threadObj())); | |
1680 event.commit(); | |
1681 } | |
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1682 |
0 | 1683 // We call another function to do the rest so we are sure that the stack addresses used |
1684 // from there will be lower than the stack base just computed | |
1685 thread_main_inner(); | |
1686 | |
1687 // Note, thread is no longer valid at this point! | |
1688 } | |
1689 | |
1690 | |
1691 void JavaThread::thread_main_inner() { | |
1692 assert(JavaThread::current() == this, "sanity check"); | |
1693 assert(this->threadObj() != NULL, "just checking"); | |
1694 | |
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1695 // Execute thread entry point unless this thread has a pending exception |
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1696 // or has been stopped before starting. |
0 | 1697 // Note: Due to JVM_StopThread we can have pending exceptions already! |
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1698 if (!this->has_pending_exception() && |
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1699 !java_lang_Thread::is_stillborn(this->threadObj())) { |
4006 | 1700 { |
1701 ResourceMark rm(this); | |
1702 this->set_native_thread_name(this->get_thread_name()); | |
1703 } | |
0 | 1704 HandleMark hm(this); |
1705 this->entry_point()(this, this); | |
1706 } | |
1707 | |
1708 DTRACE_THREAD_PROBE(stop, this); | |
1709 | |
1710 this->exit(false); | |
1711 delete this; | |
1712 } | |
1713 | |
1714 | |
1715 static void ensure_join(JavaThread* thread) { | |
1716 // We do not need to grap the Threads_lock, since we are operating on ourself. | |
1717 Handle threadObj(thread, thread->threadObj()); | |
1718 assert(threadObj.not_null(), "java thread object must exist"); | |
1719 ObjectLocker lock(threadObj, thread); | |
1720 // Ignore pending exception (ThreadDeath), since we are exiting anyway | |
1721 thread->clear_pending_exception(); | |
1722 // Thread is exiting. So set thread_status field in java.lang.Thread class to TERMINATED. | |
1723 java_lang_Thread::set_thread_status(threadObj(), java_lang_Thread::TERMINATED); | |
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1724 // Clear the native thread instance - this makes isAlive return false and allows the join() |
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1725 // to complete once we've done the notify_all below |
0 | 1726 java_lang_Thread::set_thread(threadObj(), NULL); |
1727 lock.notify_all(thread); | |
1728 // Ignore pending exception (ThreadDeath), since we are exiting anyway | |
1729 thread->clear_pending_exception(); | |
1730 } | |
1731 | |
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1732 |
0 | 1733 // For any new cleanup additions, please check to see if they need to be applied to |
1734 // cleanup_failed_attach_current_thread as well. | |
1735 void JavaThread::exit(bool destroy_vm, ExitType exit_type) { | |
1736 assert(this == JavaThread::current(), "thread consistency check"); | |
1737 | |
1738 HandleMark hm(this); | |
1739 Handle uncaught_exception(this, this->pending_exception()); | |
1740 this->clear_pending_exception(); | |
1741 Handle threadObj(this, this->threadObj()); | |
1742 assert(threadObj.not_null(), "Java thread object should be created"); | |
1743 | |
1744 if (get_thread_profiler() != NULL) { | |
1745 get_thread_profiler()->disengage(); | |
1746 ResourceMark rm; | |
1747 get_thread_profiler()->print(get_thread_name()); | |
1748 } | |
1749 | |
1750 | |
1751 // FIXIT: This code should be moved into else part, when reliable 1.2/1.3 check is in place | |
1752 { | |
1753 EXCEPTION_MARK; | |
1754 | |
1755 CLEAR_PENDING_EXCEPTION; | |
1756 } | |
1757 // FIXIT: The is_null check is only so it works better on JDK1.2 VM's. This | |
1758 // has to be fixed by a runtime query method | |
1759 if (!destroy_vm || JDK_Version::is_jdk12x_version()) { | |
1760 // JSR-166: change call from from ThreadGroup.uncaughtException to | |
1761 // java.lang.Thread.dispatchUncaughtException | |
1762 if (uncaught_exception.not_null()) { | |
1763 Handle group(this, java_lang_Thread::threadGroup(threadObj())); | |
1764 { | |
1765 EXCEPTION_MARK; | |
1766 // Check if the method Thread.dispatchUncaughtException() exists. If so | |
1767 // call it. Otherwise we have an older library without the JSR-166 changes, | |
1768 // so call ThreadGroup.uncaughtException() | |
1769 KlassHandle recvrKlass(THREAD, threadObj->klass()); | |
1770 CallInfo callinfo; | |
1142 | 1771 KlassHandle thread_klass(THREAD, SystemDictionary::Thread_klass()); |
0 | 1772 LinkResolver::resolve_virtual_call(callinfo, threadObj, recvrKlass, thread_klass, |
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1773 vmSymbols::dispatchUncaughtException_name(), |
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1774 vmSymbols::throwable_void_signature(), |
0 | 1775 KlassHandle(), false, false, THREAD); |
1776 CLEAR_PENDING_EXCEPTION; | |
1777 methodHandle method = callinfo.selected_method(); | |
1778 if (method.not_null()) { | |
1779 JavaValue result(T_VOID); | |
1780 JavaCalls::call_virtual(&result, | |
1781 threadObj, thread_klass, | |
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1782 vmSymbols::dispatchUncaughtException_name(), |
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1783 vmSymbols::throwable_void_signature(), |
0 | 1784 uncaught_exception, |
1785 THREAD); | |
1786 } else { | |
1142 | 1787 KlassHandle thread_group(THREAD, SystemDictionary::ThreadGroup_klass()); |
0 | 1788 JavaValue result(T_VOID); |
1789 JavaCalls::call_virtual(&result, | |
1790 group, thread_group, | |
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1791 vmSymbols::uncaughtException_name(), |
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1792 vmSymbols::thread_throwable_void_signature(), |
0 | 1793 threadObj, // Arg 1 |
1794 uncaught_exception, // Arg 2 | |
1795 THREAD); | |
1796 } | |
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1797 if (HAS_PENDING_EXCEPTION) { |
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1798 ResourceMark rm(this); |
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1799 jio_fprintf(defaultStream::error_stream(), |
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1800 "\nException: %s thrown from the UncaughtExceptionHandler" |
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1801 " in thread \"%s\"\n", |
6983 | 1802 pending_exception()->klass()->external_name(), |
2200
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1803 get_thread_name()); |
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1804 CLEAR_PENDING_EXCEPTION; |
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1805 } |
0 | 1806 } |
1807 } | |
1808 | |
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1809 // Called before the java thread exit since we want to read info |
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1810 // from java_lang_Thread object |
10405 | 1811 EventThreadEnd event; |
1812 if (event.should_commit()) { | |
1813 event.set_javalangthread(java_lang_Thread::thread_id(this->threadObj())); | |
1814 event.commit(); | |
1815 } | |
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1816 |
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1817 // Call after last event on thread |
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1818 EVENT_THREAD_EXIT(this); |
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1819 |
0 | 1820 // Call Thread.exit(). We try 3 times in case we got another Thread.stop during |
1821 // the execution of the method. If that is not enough, then we don't really care. Thread.stop | |
1822 // is deprecated anyhow. | |
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1823 if (!is_Compiler_thread()) { |
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1824 int count = 3; |
0 | 1825 while (java_lang_Thread::threadGroup(threadObj()) != NULL && (count-- > 0)) { |
1826 EXCEPTION_MARK; | |
1827 JavaValue result(T_VOID); | |
1142 | 1828 KlassHandle thread_klass(THREAD, SystemDictionary::Thread_klass()); |
0 | 1829 JavaCalls::call_virtual(&result, |
1830 threadObj, thread_klass, | |
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1831 vmSymbols::exit_method_name(), |
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1832 vmSymbols::void_method_signature(), |
0 | 1833 THREAD); |
1834 CLEAR_PENDING_EXCEPTION; | |
1835 } | |
1836 } | |
1837 // notify JVMTI | |
1838 if (JvmtiExport::should_post_thread_life()) { | |
1839 JvmtiExport::post_thread_end(this); | |
1840 } | |
1841 | |
1842 // We have notified the agents that we are exiting, before we go on, | |
1843 // we must check for a pending external suspend request and honor it | |
1844 // in order to not surprise the thread that made the suspend request. | |
1845 while (true) { | |
1846 { | |
1847 MutexLockerEx ml(SR_lock(), Mutex::_no_safepoint_check_flag); | |
1848 if (!is_external_suspend()) { | |
1849 set_terminated(_thread_exiting); | |
1850 ThreadService::current_thread_exiting(this); | |
1851 break; | |
1852 } | |
1853 // Implied else: | |
1854 // Things get a little tricky here. We have a pending external | |
1855 // suspend request, but we are holding the SR_lock so we | |
1856 // can't just self-suspend. So we temporarily drop the lock | |
1857 // and then self-suspend. | |
1858 } | |
1859 | |
1860 ThreadBlockInVM tbivm(this); | |
1861 java_suspend_self(); | |
1862 | |
1863 // We're done with this suspend request, but we have to loop around | |
1864 // and check again. Eventually we will get SR_lock without a pending | |
1865 // external suspend request and will be able to mark ourselves as | |
1866 // exiting. | |
1867 } | |
1868 // no more external suspends are allowed at this point | |
1869 } else { | |
1870 // before_exit() has already posted JVMTI THREAD_END events | |
1871 } | |
1872 | |
1873 // Notify waiters on thread object. This has to be done after exit() is called | |
1874 // on the thread (if the thread is the last thread in a daemon ThreadGroup the | |
1875 // group should have the destroyed bit set before waiters are notified). | |
1876 ensure_join(this); | |
1877 assert(!this->has_pending_exception(), "ensure_join should have cleared"); | |
1878 | |
1879 // 6282335 JNI DetachCurrentThread spec states that all Java monitors | |
1880 // held by this thread must be released. A detach operation must only | |
1881 // get here if there are no Java frames on the stack. Therefore, any | |
1882 // owned monitors at this point MUST be JNI-acquired monitors which are | |
1883 // pre-inflated and in the monitor cache. | |
1884 // | |
1885 // ensure_join() ignores IllegalThreadStateExceptions, and so does this. | |
1886 if (exit_type == jni_detach && JNIDetachReleasesMonitors) { | |
1887 assert(!this->has_last_Java_frame(), "detaching with Java frames?"); | |
1888 ObjectSynchronizer::release_monitors_owned_by_thread(this); | |
1889 assert(!this->has_pending_exception(), "release_monitors should have cleared"); | |
1890 } | |
1891 | |
1892 // These things needs to be done while we are still a Java Thread. Make sure that thread | |
1893 // is in a consistent state, in case GC happens | |
1894 assert(_privileged_stack_top == NULL, "must be NULL when we get here"); | |
1895 | |
1896 if (active_handles() != NULL) { | |
1897 JNIHandleBlock* block = active_handles(); | |
1898 set_active_handles(NULL); | |
1899 JNIHandleBlock::release_block(block); | |
1900 } | |
1901 | |
1902 if (free_handle_block() != NULL) { | |
1903 JNIHandleBlock* block = free_handle_block(); | |
1904 set_free_handle_block(NULL); | |
1905 JNIHandleBlock::release_block(block); | |
1906 } | |
1907 | |
1908 // These have to be removed while this is still a valid thread. | |
1909 remove_stack_guard_pages(); | |
1910 | |
1911 if (UseTLAB) { | |
1912 tlab().make_parsable(true); // retire TLAB | |
1913 } | |
1914 | |
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1915 if (JvmtiEnv::environments_might_exist()) { |
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1916 JvmtiExport::cleanup_thread(this); |
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1917 } |
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1918 |
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1919 // We must flush any deferred card marks before removing a thread from |
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1920 // the list of active threads. |
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1921 Universe::heap()->flush_deferred_store_barrier(this); |
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1922 assert(deferred_card_mark().is_empty(), "Should have been flushed"); |
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1923 |
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1924 #if INCLUDE_ALL_GCS |
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1925 // We must flush the G1-related buffers before removing a thread |
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1926 // from the list of active threads. We must do this after any deferred |
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1927 // card marks have been flushed (above) so that any entries that are |
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1928 // added to the thread's dirty card queue as a result are not lost. |
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1929 if (UseG1GC) { |
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1930 flush_barrier_queues(); |
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1931 } |
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1932 #endif // INCLUDE_ALL_GCS |
441
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1933 |
0 | 1934 // Remove from list of active threads list, and notify VM thread if we are the last non-daemon thread |
1935 Threads::remove(this); | |
1936 } | |
1937 | |
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1938 #if INCLUDE_ALL_GCS |
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1939 // Flush G1-related queues. |
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1940 void JavaThread::flush_barrier_queues() { |
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1941 satb_mark_queue().flush(); |
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1942 dirty_card_queue().flush(); |
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1943 } |
1842
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1944 |
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1945 void JavaThread::initialize_queues() { |
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|
1946 assert(!SafepointSynchronize::is_at_safepoint(), |
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1947 "we should not be at a safepoint"); |
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1948 |
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|
1949 ObjPtrQueue& satb_queue = satb_mark_queue(); |
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1950 SATBMarkQueueSet& satb_queue_set = satb_mark_queue_set(); |
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1951 // The SATB queue should have been constructed with its active |
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1952 // field set to false. |
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|
1953 assert(!satb_queue.is_active(), "SATB queue should not be active"); |
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|
1954 assert(satb_queue.is_empty(), "SATB queue should be empty"); |
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1955 // If we are creating the thread during a marking cycle, we should |
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1956 // set the active field of the SATB queue to true. |
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1957 if (satb_queue_set.is_active()) { |
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1958 satb_queue.set_active(true); |
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|
1959 } |
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|
1960 |
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|
1961 DirtyCardQueue& dirty_queue = dirty_card_queue(); |
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1962 // The dirty card queue should have been constructed with its |
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1963 // active field set to true. |
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1964 assert(dirty_queue.is_active(), "dirty card queue should be active"); |
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1965 } |
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1966 #endif // INCLUDE_ALL_GCS |
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1967 |
0 | 1968 void JavaThread::cleanup_failed_attach_current_thread() { |
441
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1969 if (get_thread_profiler() != NULL) { |
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1970 get_thread_profiler()->disengage(); |
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1971 ResourceMark rm; |
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1972 get_thread_profiler()->print(get_thread_name()); |
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1973 } |
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1974 |
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1975 if (active_handles() != NULL) { |
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1976 JNIHandleBlock* block = active_handles(); |
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1977 set_active_handles(NULL); |
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1978 JNIHandleBlock::release_block(block); |
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1979 } |
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1980 |
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1981 if (free_handle_block() != NULL) { |
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1982 JNIHandleBlock* block = free_handle_block(); |
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1983 set_free_handle_block(NULL); |
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1984 JNIHandleBlock::release_block(block); |
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1985 } |
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1986 |
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1987 // These have to be removed while this is still a valid thread. |
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1988 remove_stack_guard_pages(); |
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1989 |
441
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1990 if (UseTLAB) { |
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1991 tlab().make_parsable(true); // retire TLAB, if any |
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1992 } |
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1993 |
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1994 #if INCLUDE_ALL_GCS |
441
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1995 if (UseG1GC) { |
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|
1996 flush_barrier_queues(); |
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1997 } |
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1998 #endif // INCLUDE_ALL_GCS |
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1999 |
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2000 Threads::remove(this); |
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2001 delete this; |
0 | 2002 } |
2003 | |
2004 | |
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2005 |
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2006 |
0 | 2007 JavaThread* JavaThread::active() { |
2008 Thread* thread = ThreadLocalStorage::thread(); | |
2009 assert(thread != NULL, "just checking"); | |
2010 if (thread->is_Java_thread()) { | |
2011 return (JavaThread*) thread; | |
2012 } else { | |
2013 assert(thread->is_VM_thread(), "this must be a vm thread"); | |
2014 VM_Operation* op = ((VMThread*) thread)->vm_operation(); | |
2015 JavaThread *ret=op == NULL ? NULL : (JavaThread *)op->calling_thread(); | |
2016 assert(ret->is_Java_thread(), "must be a Java thread"); | |
2017 return ret; | |
2018 } | |
2019 } | |
2020 | |
2021 bool JavaThread::is_lock_owned(address adr) const { | |
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|
2022 if (Thread::is_lock_owned(adr)) return true; |
0 | 2023 |
2024 for (MonitorChunk* chunk = monitor_chunks(); chunk != NULL; chunk = chunk->next()) { | |
2025 if (chunk->contains(adr)) return true; | |
2026 } | |
2027 | |
2028 return false; | |
2029 } | |
2030 | |
2031 | |
2032 void JavaThread::add_monitor_chunk(MonitorChunk* chunk) { | |
2033 chunk->set_next(monitor_chunks()); | |
2034 set_monitor_chunks(chunk); | |
2035 } | |
2036 | |
2037 void JavaThread::remove_monitor_chunk(MonitorChunk* chunk) { | |
2038 guarantee(monitor_chunks() != NULL, "must be non empty"); | |
2039 if (monitor_chunks() == chunk) { | |
2040 set_monitor_chunks(chunk->next()); | |
2041 } else { | |
2042 MonitorChunk* prev = monitor_chunks(); | |
2043 while (prev->next() != chunk) prev = prev->next(); | |
2044 prev->set_next(chunk->next()); | |
2045 } | |
2046 } | |
2047 | |
2048 // JVM support. | |
2049 | |
2050 // Note: this function shouldn't block if it's called in | |
2051 // _thread_in_native_trans state (such as from | |
2052 // check_special_condition_for_native_trans()). | |
2053 void JavaThread::check_and_handle_async_exceptions(bool check_unsafe_error) { | |
2054 | |
2055 if (has_last_Java_frame() && has_async_condition()) { | |
2056 // If we are at a polling page safepoint (not a poll return) | |
2057 // then we must defer async exception because live registers | |
2058 // will be clobbered by the exception path. Poll return is | |
2059 // ok because the call we a returning from already collides | |
2060 // with exception handling registers and so there is no issue. | |
2061 // (The exception handling path kills call result registers but | |
2062 // this is ok since the exception kills the result anyway). | |
2063 | |
2064 if (is_at_poll_safepoint()) { | |
2065 // if the code we are returning to has deoptimized we must defer | |
2066 // the exception otherwise live registers get clobbered on the | |
2067 // exception path before deoptimization is able to retrieve them. | |
2068 // | |
2069 RegisterMap map(this, false); | |
2070 frame caller_fr = last_frame().sender(&map); | |
2071 assert(caller_fr.is_compiled_frame(), "what?"); | |
2072 if (caller_fr.is_deoptimized_frame()) { | |
2073 if (TraceExceptions) { | |
2074 ResourceMark rm; | |
2075 tty->print_cr("deferred async exception at compiled safepoint"); | |
2076 } | |
2077 return; | |
2078 } | |
2079 } | |
2080 } | |
2081 | |
2082 JavaThread::AsyncRequests condition = clear_special_runtime_exit_condition(); | |
2083 if (condition == _no_async_condition) { | |
2084 // Conditions have changed since has_special_runtime_exit_condition() | |
2085 // was called: | |
2086 // - if we were here only because of an external suspend request, | |
2087 // then that was taken care of above (or cancelled) so we are done | |
2088 // - if we were here because of another async request, then it has | |
2089 // been cleared between the has_special_runtime_exit_condition() | |
2090 // and now so again we are done | |
2091 return; | |
2092 } | |
2093 | |
2094 // Check for pending async. exception | |
2095 if (_pending_async_exception != NULL) { | |
2096 // Only overwrite an already pending exception, if it is not a threadDeath. | |
1142 | 2097 if (!has_pending_exception() || !pending_exception()->is_a(SystemDictionary::ThreadDeath_klass())) { |
0 | 2098 |
2099 // We cannot call Exceptions::_throw(...) here because we cannot block | |
2100 set_pending_exception(_pending_async_exception, __FILE__, __LINE__); | |
2101 | |
2102 if (TraceExceptions) { | |
2103 ResourceMark rm; | |
2104 tty->print("Async. exception installed at runtime exit (" INTPTR_FORMAT ")", this); | |
2105 if (has_last_Java_frame() ) { | |
2106 frame f = last_frame(); | |
2107 tty->print(" (pc: " INTPTR_FORMAT " sp: " INTPTR_FORMAT " )", f.pc(), f.sp()); | |
2108 } | |
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2109 tty->print_cr(" of type: %s", InstanceKlass::cast(_pending_async_exception->klass())->external_name()); |
0 | 2110 } |
2111 _pending_async_exception = NULL; | |
2112 clear_has_async_exception(); | |
2113 } | |
2114 } | |
2115 | |
2116 if (check_unsafe_error && | |
2117 condition == _async_unsafe_access_error && !has_pending_exception()) { | |
2118 condition = _no_async_condition; // done | |
2119 switch (thread_state()) { | |
2120 case _thread_in_vm: | |
2121 { | |
2122 JavaThread* THREAD = this; | |
2123 THROW_MSG(vmSymbols::java_lang_InternalError(), "a fault occurred in an unsafe memory access operation"); | |
2124 } | |
2125 case _thread_in_native: | |
2126 { | |
2127 ThreadInVMfromNative tiv(this); | |
2128 JavaThread* THREAD = this; | |
2129 THROW_MSG(vmSymbols::java_lang_InternalError(), "a fault occurred in an unsafe memory access operation"); | |
2130 } | |
2131 case _thread_in_Java: | |
2132 { | |
2133 ThreadInVMfromJava tiv(this); | |
2134 JavaThread* THREAD = this; | |
2135 THROW_MSG(vmSymbols::java_lang_InternalError(), "a fault occurred in a recent unsafe memory access operation in compiled Java code"); | |
2136 } | |
2137 default: | |
2138 ShouldNotReachHere(); | |
2139 } | |
2140 } | |
2141 | |
2142 assert(condition == _no_async_condition || has_pending_exception() || | |
2143 (!check_unsafe_error && condition == _async_unsafe_access_error), | |
2144 "must have handled the async condition, if no exception"); | |
2145 } | |
2146 | |
2147 void JavaThread::handle_special_runtime_exit_condition(bool check_asyncs) { | |
2148 // | |
2149 // Check for pending external suspend. Internal suspend requests do | |
2150 // not use handle_special_runtime_exit_condition(). | |
2151 // If JNIEnv proxies are allowed, don't self-suspend if the target | |
2152 // thread is not the current thread. In older versions of jdbx, jdbx | |
2153 // threads could call into the VM with another thread's JNIEnv so we | |
2154 // can be here operating on behalf of a suspended thread (4432884). | |
2155 bool do_self_suspend = is_external_suspend_with_lock(); | |
2156 if (do_self_suspend && (!AllowJNIEnvProxy || this == JavaThread::current())) { | |
2157 // | |
2158 // Because thread is external suspended the safepoint code will count | |
2159 // thread as at a safepoint. This can be odd because we can be here | |
2160 // as _thread_in_Java which would normally transition to _thread_blocked | |
2161 // at a safepoint. We would like to mark the thread as _thread_blocked | |
2162 // before calling java_suspend_self like all other callers of it but | |
2163 // we must then observe proper safepoint protocol. (We can't leave | |
2164 // _thread_blocked with a safepoint in progress). However we can be | |
2165 // here as _thread_in_native_trans so we can't use a normal transition | |
2166 // constructor/destructor pair because they assert on that type of | |
2167 // transition. We could do something like: | |
2168 // | |
2169 // JavaThreadState state = thread_state(); | |
2170 // set_thread_state(_thread_in_vm); | |
2171 // { | |
2172 // ThreadBlockInVM tbivm(this); | |
2173 // java_suspend_self() | |
2174 // } | |
2175 // set_thread_state(_thread_in_vm_trans); | |
2176 // if (safepoint) block; | |
2177 // set_thread_state(state); | |
2178 // | |
2179 // but that is pretty messy. Instead we just go with the way the | |
2180 // code has worked before and note that this is the only path to | |
2181 // java_suspend_self that doesn't put the thread in _thread_blocked | |
2182 // mode. | |
2183 | |
2184 frame_anchor()->make_walkable(this); | |
2185 java_suspend_self(); | |
2186 | |
2187 // We might be here for reasons in addition to the self-suspend request | |
2188 // so check for other async requests. | |
2189 } | |
2190 | |
2191 if (check_asyncs) { | |
2192 check_and_handle_async_exceptions(); | |
2193 } | |
2194 } | |
2195 | |
2196 void JavaThread::send_thread_stop(oop java_throwable) { | |
2197 assert(Thread::current()->is_VM_thread(), "should be in the vm thread"); | |
2198 assert(Threads_lock->is_locked(), "Threads_lock should be locked by safepoint code"); | |
2199 assert(SafepointSynchronize::is_at_safepoint(), "all threads are stopped"); | |
2200 | |
2201 // Do not throw asynchronous exceptions against the compiler thread | |
2202 // (the compiler thread should not be a Java thread -- fix in 1.4.2) | |
2203 if (is_Compiler_thread()) return; | |
2204 | |
2205 { | |
2206 // Actually throw the Throwable against the target Thread - however | |
2207 // only if there is no thread death exception installed already. | |
1142 | 2208 if (_pending_async_exception == NULL || !_pending_async_exception->is_a(SystemDictionary::ThreadDeath_klass())) { |
0 | 2209 // If the topmost frame is a runtime stub, then we are calling into |
2210 // OptoRuntime from compiled code. Some runtime stubs (new, monitor_exit..) | |
2211 // must deoptimize the caller before continuing, as the compiled exception handler table | |
2212 // may not be valid | |
2213 if (has_last_Java_frame()) { | |
2214 frame f = last_frame(); | |
2215 if (f.is_runtime_frame() || f.is_safepoint_blob_frame()) { | |
2216 // BiasedLocking needs an updated RegisterMap for the revoke monitors pass | |
2217 RegisterMap reg_map(this, UseBiasedLocking); | |
2218 frame compiled_frame = f.sender(®_map); | |
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|
2219 if (!StressCompiledExceptionHandlers && compiled_frame.can_be_deoptimized()) { |
0 | 2220 Deoptimization::deoptimize(this, compiled_frame, ®_map); |
2221 } | |
2222 } | |
2223 } | |
2224 | |
2225 // Set async. pending exception in thread. | |
2226 set_pending_async_exception(java_throwable); | |
2227 | |
2228 if (TraceExceptions) { | |
2229 ResourceMark rm; | |
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|
2230 tty->print_cr("Pending Async. exception installed of type: %s", InstanceKlass::cast(_pending_async_exception->klass())->external_name()); |
0 | 2231 } |
2232 // for AbortVMOnException flag | |
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2233 NOT_PRODUCT(Exceptions::debug_check_abort(InstanceKlass::cast(_pending_async_exception->klass())->external_name())); |
0 | 2234 } |
2235 } | |
2236 | |
2237 | |
2238 // Interrupt thread so it will wake up from a potential wait() | |
2239 Thread::interrupt(this); | |
2240 } | |
2241 | |
2242 // External suspension mechanism. | |
2243 // | |
2244 // Tell the VM to suspend a thread when ever it knows that it does not hold on | |
2245 // to any VM_locks and it is at a transition | |
2246 // Self-suspension will happen on the transition out of the vm. | |
2247 // Catch "this" coming in from JNIEnv pointers when the thread has been freed | |
2248 // | |
2249 // Guarantees on return: | |
2250 // + Target thread will not execute any new bytecode (that's why we need to | |
2251 // force a safepoint) | |
2252 // + Target thread will not enter any new monitors | |
2253 // | |
2254 void JavaThread::java_suspend() { | |
2255 { MutexLocker mu(Threads_lock); | |
2256 if (!Threads::includes(this) || is_exiting() || this->threadObj() == NULL) { | |
2257 return; | |
2258 } | |
2259 } | |
2260 | |
2261 { MutexLockerEx ml(SR_lock(), Mutex::_no_safepoint_check_flag); | |
2262 if (!is_external_suspend()) { | |
2263 // a racing resume has cancelled us; bail out now | |
2264 return; | |
2265 } | |
2266 | |
2267 // suspend is done | |
2268 uint32_t debug_bits = 0; | |
2269 // Warning: is_ext_suspend_completed() may temporarily drop the | |
2270 // SR_lock to allow the thread to reach a stable thread state if | |
2271 // it is currently in a transient thread state. | |
2272 if (is_ext_suspend_completed(false /* !called_by_wait */, | |
2273 SuspendRetryDelay, &debug_bits) ) { | |
2274 return; | |
2275 } | |
2276 } | |
2277 | |
2278 VM_ForceSafepoint vm_suspend; | |
2279 VMThread::execute(&vm_suspend); | |
2280 } | |
2281 | |
2282 // Part II of external suspension. | |
2283 // A JavaThread self suspends when it detects a pending external suspend | |
2284 // request. This is usually on transitions. It is also done in places | |
2285 // where continuing to the next transition would surprise the caller, | |
2286 // e.g., monitor entry. | |
2287 // | |
2288 // Returns the number of times that the thread self-suspended. | |
2289 // | |
2290 // Note: DO NOT call java_suspend_self() when you just want to block current | |
2291 // thread. java_suspend_self() is the second stage of cooperative | |
2292 // suspension for external suspend requests and should only be used | |
2293 // to complete an external suspend request. | |
2294 // | |
2295 int JavaThread::java_suspend_self() { | |
2296 int ret = 0; | |
2297 | |
2298 // we are in the process of exiting so don't suspend | |
2299 if (is_exiting()) { | |
2300 clear_external_suspend(); | |
2301 return ret; | |
2302 } | |
2303 | |
2304 assert(_anchor.walkable() || | |
2305 (is_Java_thread() && !((JavaThread*)this)->has_last_Java_frame()), | |
2306 "must have walkable stack"); | |
2307 | |
2308 MutexLockerEx ml(SR_lock(), Mutex::_no_safepoint_check_flag); | |
2309 | |
979 | 2310 assert(!this->is_ext_suspended(), |
0 | 2311 "a thread trying to self-suspend should not already be suspended"); |
2312 | |
2313 if (this->is_suspend_equivalent()) { | |
2314 // If we are self-suspending as a result of the lifting of a | |
2315 // suspend equivalent condition, then the suspend_equivalent | |
2316 // flag is not cleared until we set the ext_suspended flag so | |
2317 // that wait_for_ext_suspend_completion() returns consistent | |
2318 // results. | |
2319 this->clear_suspend_equivalent(); | |
2320 } | |
2321 | |
2322 // A racing resume may have cancelled us before we grabbed SR_lock | |
2323 // above. Or another external suspend request could be waiting for us | |
2324 // by the time we return from SR_lock()->wait(). The thread | |
2325 // that requested the suspension may already be trying to walk our | |
2326 // stack and if we return now, we can change the stack out from under | |
2327 // it. This would be a "bad thing (TM)" and cause the stack walker | |
2328 // to crash. We stay self-suspended until there are no more pending | |
2329 // external suspend requests. | |
2330 while (is_external_suspend()) { | |
2331 ret++; | |
2332 this->set_ext_suspended(); | |
2333 | |
2334 // _ext_suspended flag is cleared by java_resume() | |
2335 while (is_ext_suspended()) { | |
2336 this->SR_lock()->wait(Mutex::_no_safepoint_check_flag); | |
2337 } | |
2338 } | |
2339 | |
2340 return ret; | |
2341 } | |
2342 | |
2343 #ifdef ASSERT | |
2344 // verify the JavaThread has not yet been published in the Threads::list, and | |
2345 // hence doesn't need protection from concurrent access at this stage | |
2346 void JavaThread::verify_not_published() { | |
2347 if (!Threads_lock->owned_by_self()) { | |
2348 MutexLockerEx ml(Threads_lock, Mutex::_no_safepoint_check_flag); | |
2349 assert( !Threads::includes(this), | |
2350 "java thread shouldn't have been published yet!"); | |
2351 } | |
2352 else { | |
2353 assert( !Threads::includes(this), | |
2354 "java thread shouldn't have been published yet!"); | |
2355 } | |
2356 } | |
2357 #endif | |
2358 | |
2359 // Slow path when the native==>VM/Java barriers detect a safepoint is in | |
2360 // progress or when _suspend_flags is non-zero. | |
2361 // Current thread needs to self-suspend if there is a suspend request and/or | |
2362 // block if a safepoint is in progress. | |
2363 // Async exception ISN'T checked. | |
2364 // Note only the ThreadInVMfromNative transition can call this function | |
2365 // directly and when thread state is _thread_in_native_trans | |
2366 void JavaThread::check_safepoint_and_suspend_for_native_trans(JavaThread *thread) { | |
2367 assert(thread->thread_state() == _thread_in_native_trans, "wrong state"); | |
2368 | |
2369 JavaThread *curJT = JavaThread::current(); | |
2370 bool do_self_suspend = thread->is_external_suspend(); | |
2371 | |
2372 assert(!curJT->has_last_Java_frame() || curJT->frame_anchor()->walkable(), "Unwalkable stack in native->vm transition"); | |
2373 | |
2374 // If JNIEnv proxies are allowed, don't self-suspend if the target | |
2375 // thread is not the current thread. In older versions of jdbx, jdbx | |
2376 // threads could call into the VM with another thread's JNIEnv so we | |
2377 // can be here operating on behalf of a suspended thread (4432884). | |
2378 if (do_self_suspend && (!AllowJNIEnvProxy || curJT == thread)) { | |
2379 JavaThreadState state = thread->thread_state(); | |
2380 | |
2381 // We mark this thread_blocked state as a suspend-equivalent so | |
2382 // that a caller to is_ext_suspend_completed() won't be confused. | |
2383 // The suspend-equivalent state is cleared by java_suspend_self(). | |
2384 thread->set_suspend_equivalent(); | |
2385 | |
2386 // If the safepoint code sees the _thread_in_native_trans state, it will | |
2387 // wait until the thread changes to other thread state. There is no | |
2388 // guarantee on how soon we can obtain the SR_lock and complete the | |
2389 // self-suspend request. It would be a bad idea to let safepoint wait for | |
2390 // too long. Temporarily change the state to _thread_blocked to | |
2391 // let the VM thread know that this thread is ready for GC. The problem | |
2392 // of changing thread state is that safepoint could happen just after | |
2393 // java_suspend_self() returns after being resumed, and VM thread will | |
2394 // see the _thread_blocked state. We must check for safepoint | |
2395 // after restoring the state and make sure we won't leave while a safepoint | |
2396 // is in progress. | |
2397 thread->set_thread_state(_thread_blocked); | |
2398 thread->java_suspend_self(); | |
2399 thread->set_thread_state(state); | |
2400 // Make sure new state is seen by VM thread | |
2401 if (os::is_MP()) { | |
2402 if (UseMembar) { | |
2403 // Force a fence between the write above and read below | |
2404 OrderAccess::fence(); | |
2405 } else { | |
2406 // Must use this rather than serialization page in particular on Windows | |
2407 InterfaceSupport::serialize_memory(thread); | |
2408 } | |
2409 } | |
2410 } | |
2411 | |
2412 if (SafepointSynchronize::do_call_back()) { | |
2413 // If we are safepointing, then block the caller which may not be | |
2414 // the same as the target thread (see above). | |
2415 SafepointSynchronize::block(curJT); | |
2416 } | |
2417 | |
2418 if (thread->is_deopt_suspend()) { | |
2419 thread->clear_deopt_suspend(); | |
2420 RegisterMap map(thread, false); | |
2421 frame f = thread->last_frame(); | |
2422 while ( f.id() != thread->must_deopt_id() && ! f.is_first_frame()) { | |
2423 f = f.sender(&map); | |
2424 } | |
2425 if (f.id() == thread->must_deopt_id()) { | |
2426 thread->clear_must_deopt_id(); | |
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2427 f.deoptimize(thread); |
0 | 2428 } else { |
2429 fatal("missed deoptimization!"); | |
2430 } | |
2431 } | |
2432 } | |
2433 | |
2434 // Slow path when the native==>VM/Java barriers detect a safepoint is in | |
2435 // progress or when _suspend_flags is non-zero. | |
2436 // Current thread needs to self-suspend if there is a suspend request and/or | |
2437 // block if a safepoint is in progress. | |
2438 // Also check for pending async exception (not including unsafe access error). | |
2439 // Note only the native==>VM/Java barriers can call this function and when | |
2440 // thread state is _thread_in_native_trans. | |
2441 void JavaThread::check_special_condition_for_native_trans(JavaThread *thread) { | |
2442 check_safepoint_and_suspend_for_native_trans(thread); | |
2443 | |
2444 if (thread->has_async_exception()) { | |
2445 // We are in _thread_in_native_trans state, don't handle unsafe | |
2446 // access error since that may block. | |
2447 thread->check_and_handle_async_exceptions(false); | |
2448 } | |
2449 } | |
2450 | |
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2451 // This is a variant of the normal |
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2452 // check_special_condition_for_native_trans with slightly different |
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2453 // semantics for use by critical native wrappers. It does all the |
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2454 // normal checks but also performs the transition back into |
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2455 // thread_in_Java state. This is required so that critical natives |
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2456 // can potentially block and perform a GC if they are the last thread |
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2457 // exiting the GC_locker. |
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2458 void JavaThread::check_special_condition_for_native_trans_and_transition(JavaThread *thread) { |
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2459 check_special_condition_for_native_trans(thread); |
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2460 |
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2461 // Finish the transition |
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2462 thread->set_thread_state(_thread_in_Java); |
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2463 |
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2464 if (thread->do_critical_native_unlock()) { |
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2465 ThreadInVMfromJavaNoAsyncException tiv(thread); |
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2466 GC_locker::unlock_critical(thread); |
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2467 thread->clear_critical_native_unlock(); |
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2468 } |
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2469 } |
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2470 |
0 | 2471 // We need to guarantee the Threads_lock here, since resumes are not |
2472 // allowed during safepoint synchronization | |
2473 // Can only resume from an external suspension | |
2474 void JavaThread::java_resume() { | |
2475 assert_locked_or_safepoint(Threads_lock); | |
2476 | |
2477 // Sanity check: thread is gone, has started exiting or the thread | |
2478 // was not externally suspended. | |
2479 if (!Threads::includes(this) || is_exiting() || !is_external_suspend()) { | |
2480 return; | |
2481 } | |
2482 | |
2483 MutexLockerEx ml(SR_lock(), Mutex::_no_safepoint_check_flag); | |
2484 | |
2485 clear_external_suspend(); | |
2486 | |
2487 if (is_ext_suspended()) { | |
2488 clear_ext_suspended(); | |
2489 SR_lock()->notify_all(); | |
2490 } | |
2491 } | |
2492 | |
2493 void JavaThread::create_stack_guard_pages() { | |
2494 if (! os::uses_stack_guard_pages() || _stack_guard_state != stack_guard_unused) return; | |
2495 address low_addr = stack_base() - stack_size(); | |
2496 size_t len = (StackYellowPages + StackRedPages) * os::vm_page_size(); | |
2497 | |
2498 int allocate = os::allocate_stack_guard_pages(); | |
2499 // warning("Guarding at " PTR_FORMAT " for len " SIZE_FORMAT "\n", low_addr, len); | |
2500 | |
1320
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2501 if (allocate && !os::create_stack_guard_pages((char *) low_addr, len)) { |
0 | 2502 warning("Attempt to allocate stack guard pages failed."); |
2503 return; | |
2504 } | |
2505 | |
2506 if (os::guard_memory((char *) low_addr, len)) { | |
2507 _stack_guard_state = stack_guard_enabled; | |
2508 } else { | |
2509 warning("Attempt to protect stack guard pages failed."); | |
2510 if (os::uncommit_memory((char *) low_addr, len)) { | |
2511 warning("Attempt to deallocate stack guard pages failed."); | |
2512 } | |
2513 } | |
2514 } | |
2515 | |
2516 void JavaThread::remove_stack_guard_pages() { | |
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2517 assert(Thread::current() == this, "from different thread"); |
0 | 2518 if (_stack_guard_state == stack_guard_unused) return; |
2519 address low_addr = stack_base() - stack_size(); | |
2520 size_t len = (StackYellowPages + StackRedPages) * os::vm_page_size(); | |
2521 | |
2522 if (os::allocate_stack_guard_pages()) { | |
1320
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2523 if (os::remove_stack_guard_pages((char *) low_addr, len)) { |
0 | 2524 _stack_guard_state = stack_guard_unused; |
2525 } else { | |
2526 warning("Attempt to deallocate stack guard pages failed."); | |
2527 } | |
2528 } else { | |
2529 if (_stack_guard_state == stack_guard_unused) return; | |
2530 if (os::unguard_memory((char *) low_addr, len)) { | |
2531 _stack_guard_state = stack_guard_unused; | |
2532 } else { | |
2533 warning("Attempt to unprotect stack guard pages failed."); | |
2534 } | |
2535 } | |
2536 } | |
2537 | |
2538 void JavaThread::enable_stack_yellow_zone() { | |
2539 assert(_stack_guard_state != stack_guard_unused, "must be using guard pages."); | |
2540 assert(_stack_guard_state != stack_guard_enabled, "already enabled"); | |
2541 | |
2542 // The base notation is from the stacks point of view, growing downward. | |
2543 // We need to adjust it to work correctly with guard_memory() | |
2544 address base = stack_yellow_zone_base() - stack_yellow_zone_size(); | |
2545 | |
2546 guarantee(base < stack_base(),"Error calculating stack yellow zone"); | |
2547 guarantee(base < os::current_stack_pointer(),"Error calculating stack yellow zone"); | |
2548 | |
2549 if (os::guard_memory((char *) base, stack_yellow_zone_size())) { | |
2550 _stack_guard_state = stack_guard_enabled; | |
2551 } else { | |
2552 warning("Attempt to guard stack yellow zone failed."); | |
2553 } | |
2554 enable_register_stack_guard(); | |
2555 } | |
2556 | |
2557 void JavaThread::disable_stack_yellow_zone() { | |
2558 assert(_stack_guard_state != stack_guard_unused, "must be using guard pages."); | |
2559 assert(_stack_guard_state != stack_guard_yellow_disabled, "already disabled"); | |
2560 | |
2561 // Simply return if called for a thread that does not use guard pages. | |
2562 if (_stack_guard_state == stack_guard_unused) return; | |
2563 | |
2564 // The base notation is from the stacks point of view, growing downward. | |
2565 // We need to adjust it to work correctly with guard_memory() | |
2566 address base = stack_yellow_zone_base() - stack_yellow_zone_size(); | |
2567 | |
2568 if (os::unguard_memory((char *)base, stack_yellow_zone_size())) { | |
2569 _stack_guard_state = stack_guard_yellow_disabled; | |
2570 } else { | |
2571 warning("Attempt to unguard stack yellow zone failed."); | |
2572 } | |
2573 disable_register_stack_guard(); | |
2574 } | |
2575 | |
2576 void JavaThread::enable_stack_red_zone() { | |
2577 // The base notation is from the stacks point of view, growing downward. | |
2578 // We need to adjust it to work correctly with guard_memory() | |
2579 assert(_stack_guard_state != stack_guard_unused, "must be using guard pages."); | |
2580 address base = stack_red_zone_base() - stack_red_zone_size(); | |
2581 | |
2582 guarantee(base < stack_base(),"Error calculating stack red zone"); | |
2583 guarantee(base < os::current_stack_pointer(),"Error calculating stack red zone"); | |
2584 | |
2585 if(!os::guard_memory((char *) base, stack_red_zone_size())) { | |
2586 warning("Attempt to guard stack red zone failed."); | |
2587 } | |
2588 } | |
2589 | |
2590 void JavaThread::disable_stack_red_zone() { | |
2591 // The base notation is from the stacks point of view, growing downward. | |
2592 // We need to adjust it to work correctly with guard_memory() | |
2593 assert(_stack_guard_state != stack_guard_unused, "must be using guard pages."); | |
2594 address base = stack_red_zone_base() - stack_red_zone_size(); | |
2595 if (!os::unguard_memory((char *)base, stack_red_zone_size())) { | |
2596 warning("Attempt to unguard stack red zone failed."); | |
2597 } | |
2598 } | |
2599 | |
2600 void JavaThread::frames_do(void f(frame*, const RegisterMap* map)) { | |
2601 // ignore is there is no stack | |
2602 if (!has_last_Java_frame()) return; | |
2603 // traverse the stack frames. Starts from top frame. | |
2604 for(StackFrameStream fst(this); !fst.is_done(); fst.next()) { | |
2605 frame* fr = fst.current(); | |
2606 f(fr, fst.register_map()); | |
2607 } | |
2608 } | |
2609 | |
2610 | |
2611 #ifndef PRODUCT | |
2612 // Deoptimization | |
2613 // Function for testing deoptimization | |
2614 void JavaThread::deoptimize() { | |
2615 // BiasedLocking needs an updated RegisterMap for the revoke monitors pass | |
2616 StackFrameStream fst(this, UseBiasedLocking); | |
2617 bool deopt = false; // Dump stack only if a deopt actually happens. | |
2618 bool only_at = strlen(DeoptimizeOnlyAt) > 0; | |
2619 // Iterate over all frames in the thread and deoptimize | |
2620 for(; !fst.is_done(); fst.next()) { | |
2621 if(fst.current()->can_be_deoptimized()) { | |
2622 | |
2623 if (only_at) { | |
2624 // Deoptimize only at particular bcis. DeoptimizeOnlyAt | |
2625 // consists of comma or carriage return separated numbers so | |
2626 // search for the current bci in that string. | |
2627 address pc = fst.current()->pc(); | |
2628 nmethod* nm = (nmethod*) fst.current()->cb(); | |
2629 ScopeDesc* sd = nm->scope_desc_at( pc); | |
2630 char buffer[8]; | |
2631 jio_snprintf(buffer, sizeof(buffer), "%d", sd->bci()); | |
2632 size_t len = strlen(buffer); | |
2633 const char * found = strstr(DeoptimizeOnlyAt, buffer); | |
2634 while (found != NULL) { | |
2635 if ((found[len] == ',' || found[len] == '\n' || found[len] == '\0') && | |
2636 (found == DeoptimizeOnlyAt || found[-1] == ',' || found[-1] == '\n')) { | |
2637 // Check that the bci found is bracketed by terminators. | |
2638 break; | |
2639 } | |
2640 found = strstr(found + 1, buffer); | |
2641 } | |
2642 if (!found) { | |
2643 continue; | |
2644 } | |
2645 } | |
2646 | |
2647 if (DebugDeoptimization && !deopt) { | |
2648 deopt = true; // One-time only print before deopt | |
2649 tty->print_cr("[BEFORE Deoptimization]"); | |
2650 trace_frames(); | |
2651 trace_stack(); | |
2652 } | |
2653 Deoptimization::deoptimize(this, *fst.current(), fst.register_map()); | |
2654 } | |
2655 } | |
2656 | |
2657 if (DebugDeoptimization && deopt) { | |
2658 tty->print_cr("[AFTER Deoptimization]"); | |
2659 trace_frames(); | |
2660 } | |
2661 } | |
2662 | |
2663 | |
2664 // Make zombies | |
2665 void JavaThread::make_zombies() { | |
2666 for(StackFrameStream fst(this); !fst.is_done(); fst.next()) { | |
2667 if (fst.current()->can_be_deoptimized()) { | |
2668 // it is a Java nmethod | |
2669 nmethod* nm = CodeCache::find_nmethod(fst.current()->pc()); | |
2670 nm->make_not_entrant(); | |
2671 } | |
2672 } | |
2673 } | |
2674 #endif // PRODUCT | |
2675 | |
2676 | |
2677 void JavaThread::deoptimized_wrt_marked_nmethods() { | |
2678 if (!has_last_Java_frame()) return; | |
2679 // BiasedLocking needs an updated RegisterMap for the revoke monitors pass | |
2680 StackFrameStream fst(this, UseBiasedLocking); | |
2681 for(; !fst.is_done(); fst.next()) { | |
2682 if (fst.current()->should_be_deoptimized()) { | |
6843 | 2683 if (LogCompilation && xtty != NULL) { |
2684 nmethod* nm = fst.current()->cb()->as_nmethod_or_null(); | |
2685 xtty->elem("deoptimized thread='" UINTX_FORMAT "' compile_id='%d'", | |
2686 this->name(), nm != NULL ? nm->compile_id() : -1); | |
2687 } | |
2688 | |
0 | 2689 Deoptimization::deoptimize(this, *fst.current(), fst.register_map()); |
2690 } | |
2691 } | |
2692 } | |
2693 | |
2694 | |
2695 // GC support | |
2696 static void frame_gc_epilogue(frame* f, const RegisterMap* map) { f->gc_epilogue(); } | |
2697 | |
2698 void JavaThread::gc_epilogue() { | |
2699 frames_do(frame_gc_epilogue); | |
2700 } | |
2701 | |
2702 | |
2703 static void frame_gc_prologue(frame* f, const RegisterMap* map) { f->gc_prologue(); } | |
2704 | |
2705 void JavaThread::gc_prologue() { | |
2706 frames_do(frame_gc_prologue); | |
2707 } | |
2708 | |
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2709 // If the caller is a NamedThread, then remember, in the current scope, |
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2710 // the given JavaThread in its _processed_thread field. |
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2711 class RememberProcessedThread: public StackObj { |
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|
2712 NamedThread* _cur_thr; |
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|
2713 public: |
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|
2714 RememberProcessedThread(JavaThread* jthr) { |
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|
2715 Thread* thread = Thread::current(); |
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2716 if (thread->is_Named_thread()) { |
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2717 _cur_thr = (NamedThread *)thread; |
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2718 _cur_thr->set_processed_thread(jthr); |
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2719 } else { |
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2720 _cur_thr = NULL; |
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|
2721 } |
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|
2722 } |
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2723 |
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2724 ~RememberProcessedThread() { |
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|
2725 if (_cur_thr) { |
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2726 _cur_thr->set_processed_thread(NULL); |
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|
2727 } |
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|
2728 } |
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|
2729 }; |
0 | 2730 |
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2731 void JavaThread::oops_do(OopClosure* f, CLDToOopClosure* cld_f, CodeBlobClosure* cf) { |
1166 | 2732 // Verify that the deferred card marks have been flushed. |
2733 assert(deferred_card_mark().is_empty(), "Should be empty during GC"); | |
1027
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2734 |
0 | 2735 // The ThreadProfiler oops_do is done from FlatProfiler::oops_do |
2736 // since there may be more than one thread using each ThreadProfiler. | |
2737 | |
2738 // Traverse the GCHandles | |
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2739 Thread::oops_do(f, cld_f, cf); |
0 | 2740 |
2741 assert( (!has_last_Java_frame() && java_call_counter() == 0) || | |
2742 (has_last_Java_frame() && java_call_counter() > 0), "wrong java_sp info!"); | |
2743 | |
2744 if (has_last_Java_frame()) { | |
1119
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2745 // Record JavaThread to GC thread |
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|
2746 RememberProcessedThread rpt(this); |
0 | 2747 |
2748 // Traverse the privileged stack | |
2749 if (_privileged_stack_top != NULL) { | |
2750 _privileged_stack_top->oops_do(f); | |
2751 } | |
2752 | |
2753 // traverse the registered growable array | |
2754 if (_array_for_gc != NULL) { | |
2755 for (int index = 0; index < _array_for_gc->length(); index++) { | |
2756 f->do_oop(_array_for_gc->adr_at(index)); | |
2757 } | |
2758 } | |
2759 | |
2760 // Traverse the monitor chunks | |
2761 for (MonitorChunk* chunk = monitor_chunks(); chunk != NULL; chunk = chunk->next()) { | |
2762 chunk->oops_do(f); | |
2763 } | |
2764 | |
2765 // Traverse the execution stack | |
2766 for(StackFrameStream fst(this); !fst.is_done(); fst.next()) { | |
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2767 fst.current()->oops_do(f, cld_f, cf, fst.register_map()); |
0 | 2768 } |
2769 } | |
2770 | |
2771 // callee_target is never live across a gc point so NULL it here should | |
2772 // it still contain a methdOop. | |
2773 | |
2774 set_callee_target(NULL); | |
2775 | |
2776 assert(vframe_array_head() == NULL, "deopt in progress at a safepoint!"); | |
2777 // If we have deferred set_locals there might be oops waiting to be | |
2778 // written | |
2779 GrowableArray<jvmtiDeferredLocalVariableSet*>* list = deferred_locals(); | |
2780 if (list != NULL) { | |
2781 for (int i = 0; i < list->length(); i++) { | |
2782 list->at(i)->oops_do(f); | |
2783 } | |
2784 } | |
2785 | |
2786 // Traverse instance variables at the end since the GC may be moving things | |
2787 // around using this function | |
2788 f->do_oop((oop*) &_threadObj); | |
2789 f->do_oop((oop*) &_vm_result); | |
2790 f->do_oop((oop*) &_exception_oop); | |
2791 f->do_oop((oop*) &_pending_async_exception); | |
2792 | |
2793 if (jvmti_thread_state() != NULL) { | |
2794 jvmti_thread_state()->oops_do(f); | |
2795 } | |
2796 } | |
2797 | |
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2798 void JavaThread::nmethods_do(CodeBlobClosure* cf) { |
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2799 Thread::nmethods_do(cf); // (super method is a no-op) |
0 | 2800 |
2801 assert( (!has_last_Java_frame() && java_call_counter() == 0) || | |
2802 (has_last_Java_frame() && java_call_counter() > 0), "wrong java_sp info!"); | |
2803 | |
2804 if (has_last_Java_frame()) { | |
2805 // Traverse the execution stack | |
2806 for(StackFrameStream fst(this); !fst.is_done(); fst.next()) { | |
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|
2807 fst.current()->nmethods_do(cf); |
0 | 2808 } |
2809 } | |
2810 } | |
2811 | |
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2812 void JavaThread::metadata_do(void f(Metadata*)) { |
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2813 Thread::metadata_do(f); |
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|
2814 if (has_last_Java_frame()) { |
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|
2815 // Traverse the execution stack to call f() on the methods in the stack |
da91efe96a93
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2816 for(StackFrameStream fst(this); !fst.is_done(); fst.next()) { |
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2817 fst.current()->metadata_do(f); |
da91efe96a93
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|
2818 } |
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|
2819 } else if (is_Compiler_thread()) { |
da91efe96a93
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|
2820 // need to walk ciMetadata in current compile tasks to keep alive. |
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2821 CompilerThread* ct = (CompilerThread*)this; |
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2822 if (ct->env() != NULL) { |
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2823 ct->env()->metadata_do(f); |
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2824 } |
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2825 } |
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2826 } |
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2827 |
0 | 2828 // Printing |
2829 const char* _get_thread_state_name(JavaThreadState _thread_state) { | |
2830 switch (_thread_state) { | |
2831 case _thread_uninitialized: return "_thread_uninitialized"; | |
2832 case _thread_new: return "_thread_new"; | |
2833 case _thread_new_trans: return "_thread_new_trans"; | |
2834 case _thread_in_native: return "_thread_in_native"; | |
2835 case _thread_in_native_trans: return "_thread_in_native_trans"; | |
2836 case _thread_in_vm: return "_thread_in_vm"; | |
2837 case _thread_in_vm_trans: return "_thread_in_vm_trans"; | |
2838 case _thread_in_Java: return "_thread_in_Java"; | |
2839 case _thread_in_Java_trans: return "_thread_in_Java_trans"; | |
2840 case _thread_blocked: return "_thread_blocked"; | |
2841 case _thread_blocked_trans: return "_thread_blocked_trans"; | |
2842 default: return "unknown thread state"; | |
2843 } | |
2844 } | |
2845 | |
2846 #ifndef PRODUCT | |
2847 void JavaThread::print_thread_state_on(outputStream *st) const { | |
2848 st->print_cr(" JavaThread state: %s", _get_thread_state_name(_thread_state)); | |
2849 }; | |
2850 void JavaThread::print_thread_state() const { | |
2851 print_thread_state_on(tty); | |
2852 }; | |
2853 #endif // PRODUCT | |
2854 | |
2855 // Called by Threads::print() for VM_PrintThreads operation | |
2856 void JavaThread::print_on(outputStream *st) const { | |
2857 st->print("\"%s\" ", get_thread_name()); | |
2858 oop thread_oop = threadObj(); | |
6766 | 2859 if (thread_oop != NULL) { |
2860 st->print("#" INT64_FORMAT " ", java_lang_Thread::thread_id(thread_oop)); | |
2861 if (java_lang_Thread::is_daemon(thread_oop)) st->print("daemon "); | |
2862 st->print("prio=%d ", java_lang_Thread::priority(thread_oop)); | |
2863 } | |
0 | 2864 Thread::print_on(st); |
2865 // print guess for valid stack memory region (assume 4K pages); helps lock debugging | |
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2866 st->print_cr("[" INTPTR_FORMAT "]", (intptr_t)last_Java_sp() & ~right_n_bits(12)); |
0 | 2867 if (thread_oop != NULL && JDK_Version::is_gte_jdk15x_version()) { |
2868 st->print_cr(" java.lang.Thread.State: %s", java_lang_Thread::thread_status_name(thread_oop)); | |
2869 } | |
2870 #ifndef PRODUCT | |
2871 print_thread_state_on(st); | |
2872 _safepoint_state->print_on(st); | |
2873 #endif // PRODUCT | |
2874 } | |
2875 | |
2876 // Called by fatal error handler. The difference between this and | |
2877 // JavaThread::print() is that we can't grab lock or allocate memory. | |
2878 void JavaThread::print_on_error(outputStream* st, char *buf, int buflen) const { | |
2879 st->print("JavaThread \"%s\"", get_thread_name_string(buf, buflen)); | |
2880 oop thread_obj = threadObj(); | |
2881 if (thread_obj != NULL) { | |
2882 if (java_lang_Thread::is_daemon(thread_obj)) st->print(" daemon"); | |
2883 } | |
2884 st->print(" ["); | |
2885 st->print("%s", _get_thread_state_name(_thread_state)); | |
2886 if (osthread()) { | |
2887 st->print(", id=%d", osthread()->thread_id()); | |
2888 } | |
2889 st->print(", stack(" PTR_FORMAT "," PTR_FORMAT ")", | |
2890 _stack_base - _stack_size, _stack_base); | |
2891 st->print("]"); | |
2892 return; | |
2893 } | |
2894 | |
2895 // Verification | |
2896 | |
2897 static void frame_verify(frame* f, const RegisterMap *map) { f->verify(map); } | |
2898 | |
2899 void JavaThread::verify() { | |
2900 // Verify oops in the thread. | |
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2901 oops_do(&VerifyOopClosure::verify_oop, NULL, NULL); |
0 | 2902 |
2903 // Verify the stack frames. | |
2904 frames_do(frame_verify); | |
2905 } | |
2906 | |
2907 // CR 6300358 (sub-CR 2137150) | |
2908 // Most callers of this method assume that it can't return NULL but a | |
2909 // thread may not have a name whilst it is in the process of attaching to | |
2910 // the VM - see CR 6412693, and there are places where a JavaThread can be | |
2911 // seen prior to having it's threadObj set (eg JNI attaching threads and | |
2912 // if vm exit occurs during initialization). These cases can all be accounted | |
2913 // for such that this method never returns NULL. | |
2914 const char* JavaThread::get_thread_name() const { | |
2915 #ifdef ASSERT | |
2916 // early safepoints can hit while current thread does not yet have TLS | |
2917 if (!SafepointSynchronize::is_at_safepoint()) { | |
2918 Thread *cur = Thread::current(); | |
2919 if (!(cur->is_Java_thread() && cur == this)) { | |
2920 // Current JavaThreads are allowed to get their own name without | |
2921 // the Threads_lock. | |
2922 assert_locked_or_safepoint(Threads_lock); | |
2923 } | |
2924 } | |
2925 #endif // ASSERT | |
2926 return get_thread_name_string(); | |
2927 } | |
2928 | |
2929 // Returns a non-NULL representation of this thread's name, or a suitable | |
2930 // descriptive string if there is no set name | |
2931 const char* JavaThread::get_thread_name_string(char* buf, int buflen) const { | |
2932 const char* name_str; | |
2933 oop thread_obj = threadObj(); | |
2934 if (thread_obj != NULL) { | |
2935 typeArrayOop name = java_lang_Thread::name(thread_obj); | |
2936 if (name != NULL) { | |
2937 if (buf == NULL) { | |
2938 name_str = UNICODE::as_utf8((jchar*) name->base(T_CHAR), name->length()); | |
2939 } | |
2940 else { | |
2941 name_str = UNICODE::as_utf8((jchar*) name->base(T_CHAR), name->length(), buf, buflen); | |
2942 } | |
2943 } | |
4006 | 2944 else if (is_attaching_via_jni()) { // workaround for 6412693 - see 6404306 |
0 | 2945 name_str = "<no-name - thread is attaching>"; |
2946 } | |
2947 else { | |
2948 name_str = Thread::name(); | |
2949 } | |
2950 } | |
2951 else { | |
2952 name_str = Thread::name(); | |
2953 } | |
2954 assert(name_str != NULL, "unexpected NULL thread name"); | |
2955 return name_str; | |
2956 } | |
2957 | |
2958 | |
2959 const char* JavaThread::get_threadgroup_name() const { | |
2960 debug_only(if (JavaThread::current() != this) assert_locked_or_safepoint(Threads_lock);) | |
2961 oop thread_obj = threadObj(); | |
2962 if (thread_obj != NULL) { | |
2963 oop thread_group = java_lang_Thread::threadGroup(thread_obj); | |
2964 if (thread_group != NULL) { | |
2965 typeArrayOop name = java_lang_ThreadGroup::name(thread_group); | |
2966 // ThreadGroup.name can be null | |
2967 if (name != NULL) { | |
2968 const char* str = UNICODE::as_utf8((jchar*) name->base(T_CHAR), name->length()); | |
2969 return str; | |
2970 } | |
2971 } | |
2972 } | |
2973 return NULL; | |
2974 } | |
2975 | |
2976 const char* JavaThread::get_parent_name() const { | |
2977 debug_only(if (JavaThread::current() != this) assert_locked_or_safepoint(Threads_lock);) | |
2978 oop thread_obj = threadObj(); | |
2979 if (thread_obj != NULL) { | |
2980 oop thread_group = java_lang_Thread::threadGroup(thread_obj); | |
2981 if (thread_group != NULL) { | |
2982 oop parent = java_lang_ThreadGroup::parent(thread_group); | |
2983 if (parent != NULL) { | |
2984 typeArrayOop name = java_lang_ThreadGroup::name(parent); | |
2985 // ThreadGroup.name can be null | |
2986 if (name != NULL) { | |
2987 const char* str = UNICODE::as_utf8((jchar*) name->base(T_CHAR), name->length()); | |
2988 return str; | |
2989 } | |
2990 } | |
2991 } | |
2992 } | |
2993 return NULL; | |
2994 } | |
2995 | |
2996 ThreadPriority JavaThread::java_priority() const { | |
2997 oop thr_oop = threadObj(); | |
2998 if (thr_oop == NULL) return NormPriority; // Bootstrapping | |
2999 ThreadPriority priority = java_lang_Thread::priority(thr_oop); | |
3000 assert(MinPriority <= priority && priority <= MaxPriority, "sanity check"); | |
3001 return priority; | |
3002 } | |
3003 | |
3004 void JavaThread::prepare(jobject jni_thread, ThreadPriority prio) { | |
3005 | |
3006 assert(Threads_lock->owner() == Thread::current(), "must have threads lock"); | |
3007 // Link Java Thread object <-> C++ Thread | |
3008 | |
3009 // Get the C++ thread object (an oop) from the JNI handle (a jthread) | |
3010 // and put it into a new Handle. The Handle "thread_oop" can then | |
3011 // be used to pass the C++ thread object to other methods. | |
3012 | |
3013 // Set the Java level thread object (jthread) field of the | |
3014 // new thread (a JavaThread *) to C++ thread object using the | |
3015 // "thread_oop" handle. | |
3016 | |
3017 // Set the thread field (a JavaThread *) of the | |
3018 // oop representing the java_lang_Thread to the new thread (a JavaThread *). | |
3019 | |
3020 Handle thread_oop(Thread::current(), | |
3021 JNIHandles::resolve_non_null(jni_thread)); | |
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3022 assert(InstanceKlass::cast(thread_oop->klass())->is_linked(), |
0 | 3023 "must be initialized"); |
3024 set_threadObj(thread_oop()); | |
3025 java_lang_Thread::set_thread(thread_oop(), this); | |
3026 | |
3027 if (prio == NoPriority) { | |
3028 prio = java_lang_Thread::priority(thread_oop()); | |
3029 assert(prio != NoPriority, "A valid priority should be present"); | |
3030 } | |
3031 | |
3032 // Push the Java priority down to the native thread; needs Threads_lock | |
3033 Thread::set_priority(this, prio); | |
3034 | |
3035 // Add the new thread to the Threads list and set it in motion. | |
3036 // We must have threads lock in order to call Threads::add. | |
3037 // It is crucial that we do not block before the thread is | |
3038 // added to the Threads list for if a GC happens, then the java_thread oop | |
3039 // will not be visited by GC. | |
3040 Threads::add(this); | |
3041 } | |
3042 | |
3043 oop JavaThread::current_park_blocker() { | |
3044 // Support for JSR-166 locks | |
3045 oop thread_oop = threadObj(); | |
242 | 3046 if (thread_oop != NULL && |
3047 JDK_Version::current().supports_thread_park_blocker()) { | |
0 | 3048 return java_lang_Thread::park_blocker(thread_oop); |
3049 } | |
3050 return NULL; | |
3051 } | |
3052 | |
3053 | |
3054 void JavaThread::print_stack_on(outputStream* st) { | |
3055 if (!has_last_Java_frame()) return; | |
3056 ResourceMark rm; | |
3057 HandleMark hm; | |
3058 | |
3059 RegisterMap reg_map(this); | |
3060 vframe* start_vf = last_java_vframe(®_map); | |
3061 int count = 0; | |
3062 for (vframe* f = start_vf; f; f = f->sender() ) { | |
3063 if (f->is_java_frame()) { | |
3064 javaVFrame* jvf = javaVFrame::cast(f); | |
3065 java_lang_Throwable::print_stack_element(st, jvf->method(), jvf->bci()); | |
3066 | |
3067 // Print out lock information | |
3068 if (JavaMonitorsInStackTrace) { | |
3069 jvf->print_lock_info_on(st, count); | |
3070 } | |
3071 } else { | |
3072 // Ignore non-Java frames | |
3073 } | |
3074 | |
3075 // Bail-out case for too deep stacks | |
3076 count++; | |
3077 if (MaxJavaStackTraceDepth == count) return; | |
3078 } | |
3079 } | |
3080 | |
3081 | |
3082 // JVMTI PopFrame support | |
3083 void JavaThread::popframe_preserve_args(ByteSize size_in_bytes, void* start) { | |
3084 assert(_popframe_preserved_args == NULL, "should not wipe out old PopFrame preserved arguments"); | |
3085 if (in_bytes(size_in_bytes) != 0) { | |
6197 | 3086 _popframe_preserved_args = NEW_C_HEAP_ARRAY(char, in_bytes(size_in_bytes), mtThread); |
0 | 3087 _popframe_preserved_args_size = in_bytes(size_in_bytes); |
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3088 Copy::conjoint_jbytes(start, _popframe_preserved_args, _popframe_preserved_args_size); |
0 | 3089 } |
3090 } | |
3091 | |
3092 void* JavaThread::popframe_preserved_args() { | |
3093 return _popframe_preserved_args; | |
3094 } | |
3095 | |
3096 ByteSize JavaThread::popframe_preserved_args_size() { | |
3097 return in_ByteSize(_popframe_preserved_args_size); | |
3098 } | |
3099 | |
3100 WordSize JavaThread::popframe_preserved_args_size_in_words() { | |
3101 int sz = in_bytes(popframe_preserved_args_size()); | |
3102 assert(sz % wordSize == 0, "argument size must be multiple of wordSize"); | |
3103 return in_WordSize(sz / wordSize); | |
3104 } | |
3105 | |
3106 void JavaThread::popframe_free_preserved_args() { | |
3107 assert(_popframe_preserved_args != NULL, "should not free PopFrame preserved arguments twice"); | |
6197 | 3108 FREE_C_HEAP_ARRAY(char, (char*) _popframe_preserved_args, mtThread); |
0 | 3109 _popframe_preserved_args = NULL; |
3110 _popframe_preserved_args_size = 0; | |
3111 } | |
3112 | |
3113 #ifndef PRODUCT | |
3114 | |
3115 void JavaThread::trace_frames() { | |
3116 tty->print_cr("[Describe stack]"); | |
3117 int frame_no = 1; | |
3118 for(StackFrameStream fst(this); !fst.is_done(); fst.next()) { | |
3119 tty->print(" %d. ", frame_no++); | |
3120 fst.current()->print_value_on(tty,this); | |
3121 tty->cr(); | |
3122 } | |
3123 } | |
3124 | |
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3125 class PrintAndVerifyOopClosure: public OopClosure { |
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3126 protected: |
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3127 template <class T> inline void do_oop_work(T* p) { |
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3128 oop obj = oopDesc::load_decode_heap_oop(p); |
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3129 if (obj == NULL) return; |
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3130 tty->print(INTPTR_FORMAT ": ", p); |
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3131 if (obj->is_oop_or_null()) { |
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3132 if (obj->is_objArray()) { |
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3133 tty->print_cr("valid objArray: " INTPTR_FORMAT, (oopDesc*) obj); |
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3134 } else { |
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3135 obj->print(); |
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3136 } |
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3137 } else { |
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3138 tty->print_cr("invalid oop: " INTPTR_FORMAT, (oopDesc*) obj); |
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3139 } |
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3140 tty->cr(); |
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3141 } |
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3142 public: |
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3143 virtual void do_oop(oop* p) { do_oop_work(p); } |
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3144 virtual void do_oop(narrowOop* p) { do_oop_work(p); } |
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3145 }; |
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3146 |
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3147 |
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3148 static void oops_print(frame* f, const RegisterMap *map) { |
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3149 PrintAndVerifyOopClosure print; |
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3150 f->print_value(); |
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3151 f->oops_do(&print, NULL, NULL, (RegisterMap*)map); |
3908
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3152 } |
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3153 |
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3154 // Print our all the locations that contain oops and whether they are |
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3155 // valid or not. This useful when trying to find the oldest frame |
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3156 // where an oop has gone bad since the frame walk is from youngest to |
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3157 // oldest. |
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3158 void JavaThread::trace_oops() { |
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3159 tty->print_cr("[Trace oops]"); |
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3160 frames_do(oops_print); |
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3161 } |
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3162 |
0 | 3163 |
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3164 #ifdef ASSERT |
3336
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3165 // Print or validate the layout of stack frames |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
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parents:
2416
diff
changeset
|
3166 void JavaThread::print_frame_layout(int depth, bool validate_only) { |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3167 ResourceMark rm; |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3168 PRESERVE_EXCEPTION_MARK; |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3169 FrameValues values; |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3170 int frame_no = 0; |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
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parents:
2416
diff
changeset
|
3171 for(StackFrameStream fst(this, false); !fst.is_done(); fst.next()) { |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3172 fst.current()->describe(values, ++frame_no); |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3173 if (depth == frame_no) break; |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3174 } |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3175 if (validate_only) { |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3176 values.validate(); |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3177 } else { |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3178 tty->print_cr("[Describe stack layout]"); |
4042
b20d64f83668
7090904: JSR 292: JRuby junit test crashes in PSScavengeRootsClosure::do_oop
twisti
parents:
4007
diff
changeset
|
3179 values.print(this); |
3336
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
parents:
2416
diff
changeset
|
3180 } |
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
never
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2416
diff
changeset
|
3181 } |
3388
a80577f854f9
7045513: JSR 292 inlining causes crashes in methodHandleWalk.cpp
never
parents:
3384
diff
changeset
|
3182 #endif |
3336
2e038ad0c1d0
7009361: JSR 292 Invalid value on stack on solaris-sparc with -Xcomp
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2416
diff
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|
3183 |
0 | 3184 void JavaThread::trace_stack_from(vframe* start_vf) { |
3185 ResourceMark rm; | |
3186 int vframe_no = 1; | |
3187 for (vframe* f = start_vf; f; f = f->sender() ) { | |
3188 if (f->is_java_frame()) { | |
3189 javaVFrame::cast(f)->print_activation(vframe_no++); | |
3190 } else { | |
3191 f->print(); | |
3192 } | |
3193 if (vframe_no > StackPrintLimit) { | |
3194 tty->print_cr("...<more frames>..."); | |
3195 return; | |
3196 } | |
3197 } | |
3198 } | |
3199 | |
3200 | |
3201 void JavaThread::trace_stack() { | |
3202 if (!has_last_Java_frame()) return; | |
3203 ResourceMark rm; | |
3204 HandleMark hm; | |
3205 RegisterMap reg_map(this); | |
3206 trace_stack_from(last_java_vframe(®_map)); | |
3207 } | |
3208 | |
3209 | |
3210 #endif // PRODUCT | |
3211 | |
3212 | |
3213 javaVFrame* JavaThread::last_java_vframe(RegisterMap *reg_map) { | |
3214 assert(reg_map != NULL, "a map must be given"); | |
3215 frame f = last_frame(); | |
3216 for (vframe* vf = vframe::new_vframe(&f, reg_map, this); vf; vf = vf->sender() ) { | |
3217 if (vf->is_java_frame()) return javaVFrame::cast(vf); | |
3218 } | |
3219 return NULL; | |
3220 } | |
3221 | |
3222 | |
6725
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
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6198
diff
changeset
|
3223 Klass* JavaThread::security_get_caller_class(int depth) { |
0 | 3224 vframeStream vfst(this); |
3225 vfst.security_get_caller_frame(depth); | |
3226 if (!vfst.at_end()) { | |
3227 return vfst.method()->method_holder(); | |
3228 } | |
3229 return NULL; | |
3230 } | |
3231 | |
3232 static void compiler_thread_entry(JavaThread* thread, TRAPS) { | |
3233 assert(thread->is_Compiler_thread(), "must be compiler thread"); | |
3234 CompileBroker::compiler_thread_loop(); | |
3235 } | |
3236 | |
3237 // Create a CompilerThread | |
3238 CompilerThread::CompilerThread(CompileQueue* queue, CompilerCounters* counters) | |
3239 : JavaThread(&compiler_thread_entry) { | |
3240 _env = NULL; | |
3241 _log = NULL; | |
3242 _task = NULL; | |
3243 _queue = queue; | |
3244 _counters = counters; | |
1584 | 3245 _buffer_blob = NULL; |
3384
f52ed367b66d
6996747: SIGSEGV in nmethod::cleanup_inline_caches / CompiledIC::verify
never
parents:
3336
diff
changeset
|
3246 _scanned_nmethod = NULL; |
12880
469216acdb28
8023014: CodeSweeperSweepNoFlushTest.java fails with HS crash
anoll
parents:
12316
diff
changeset
|
3247 _compiler = NULL; |
0 | 3248 |
3249 #ifndef PRODUCT | |
3250 _ideal_graph_printer = NULL; | |
3251 #endif | |
3252 } | |
3253 | |
7179
d0aa87f04bd5
8003720: NPG: Method in interpreter stack frame can be deallocated
stefank
parents:
7177
diff
changeset
|
3254 void CompilerThread::oops_do(OopClosure* f, CLDToOopClosure* cld_f, CodeBlobClosure* cf) { |
d0aa87f04bd5
8003720: NPG: Method in interpreter stack frame can be deallocated
stefank
parents:
7177
diff
changeset
|
3255 JavaThread::oops_do(f, cld_f, cf); |
3384
f52ed367b66d
6996747: SIGSEGV in nmethod::cleanup_inline_caches / CompiledIC::verify
never
parents:
3336
diff
changeset
|
3256 if (_scanned_nmethod != NULL && cf != NULL) { |
f52ed367b66d
6996747: SIGSEGV in nmethod::cleanup_inline_caches / CompiledIC::verify
never
parents:
3336
diff
changeset
|
3257 // Safepoints can occur when the sweeper is scanning an nmethod so |
f52ed367b66d
6996747: SIGSEGV in nmethod::cleanup_inline_caches / CompiledIC::verify
never
parents:
3336
diff
changeset
|
3258 // process it here to make sure it isn't unloaded in the middle of |
f52ed367b66d
6996747: SIGSEGV in nmethod::cleanup_inline_caches / CompiledIC::verify
never
parents:
3336
diff
changeset
|
3259 // a scan. |
f52ed367b66d
6996747: SIGSEGV in nmethod::cleanup_inline_caches / CompiledIC::verify
never
parents:
3336
diff
changeset
|
3260 cf->do_code_blob(_scanned_nmethod); |
f52ed367b66d
6996747: SIGSEGV in nmethod::cleanup_inline_caches / CompiledIC::verify
never
parents:
3336
diff
changeset
|
3261 } |
f52ed367b66d
6996747: SIGSEGV in nmethod::cleanup_inline_caches / CompiledIC::verify
never
parents:
3336
diff
changeset
|
3262 } |
0 | 3263 |
12880
469216acdb28
8023014: CodeSweeperSweepNoFlushTest.java fails with HS crash
anoll
parents:
12316
diff
changeset
|
3264 |
0 | 3265 // ======= Threads ======== |
3266 | |
3267 // The Threads class links together all active threads, and provides | |
3268 // operations over all threads. It is protected by its own Mutex | |
3269 // lock, which is also used in other contexts to protect thread | |
3270 // operations from having the thread being operated on from exiting | |
3271 // and going away unexpectedly (e.g., safepoint synchronization) | |
3272 | |
3273 JavaThread* Threads::_thread_list = NULL; | |
3274 int Threads::_number_of_threads = 0; | |
3275 int Threads::_number_of_non_daemon_threads = 0; | |
3276 int Threads::_return_code = 0; | |
3277 size_t JavaThread::_stack_size_at_create = 0; | |
6725
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
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6198
diff
changeset
|
3278 #ifdef ASSERT |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
3279 bool Threads::_vm_complete = false; |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
3280 #endif |
0 | 3281 |
3282 // All JavaThreads | |
3283 #define ALL_JAVA_THREADS(X) for (JavaThread* X = _thread_list; X; X = X->next()) | |
3284 | |
3285 // All JavaThreads + all non-JavaThreads (i.e., every thread in the system) | |
3286 void Threads::threads_do(ThreadClosure* tc) { | |
3287 assert_locked_or_safepoint(Threads_lock); | |
3288 // ALL_JAVA_THREADS iterates through all JavaThreads | |
3289 ALL_JAVA_THREADS(p) { | |
3290 tc->do_thread(p); | |
3291 } | |
3292 // Someday we could have a table or list of all non-JavaThreads. | |
3293 // For now, just manually iterate through them. | |
3294 tc->do_thread(VMThread::vm_thread()); | |
3295 Universe::heap()->gc_threads_do(tc); | |
323
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3296 WatcherThread *wt = WatcherThread::watcher_thread(); |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3297 // Strictly speaking, the following NULL check isn't sufficient to make sure |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3298 // the data for WatcherThread is still valid upon being examined. However, |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3299 // considering that WatchThread terminates when the VM is on the way to |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3300 // exit at safepoint, the chance of the above is extremely small. The right |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3301 // way to prevent termination of WatcherThread would be to acquire |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3302 // Terminator_lock, but we can't do that without violating the lock rank |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3303 // checking in some cases. |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3304 if (wt != NULL) |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3305 tc->do_thread(wt); |
b33eef719520
6740526: sun/management/HotspotThreadMBean/GetInternalThreads.java test failed
xlu
parents:
286
diff
changeset
|
3306 |
0 | 3307 // If CompilerThreads ever become non-JavaThreads, add them here |
3308 } | |
3309 | |
3310 jint Threads::create_vm(JavaVMInitArgs* args, bool* canTryAgain) { | |
3311 | |
242 | 3312 extern void JDK_Version_init(); |
3313 | |
0 | 3314 // Check version |
3315 if (!is_supported_jni_version(args->version)) return JNI_EVERSION; | |
3316 | |
3317 // Initialize the output stream module | |
3318 ostream_init(); | |
3319 | |
3320 // Process java launcher properties. | |
3321 Arguments::process_sun_java_launcher_properties(args); | |
3322 | |
3323 // Initialize the os module before using TLS | |
3324 os::init(); | |
3325 | |
3326 // Initialize system properties. | |
3327 Arguments::init_system_properties(); | |
3328 | |
242 | 3329 // So that JDK version can be used as a discrimintor when parsing arguments |
3330 JDK_Version_init(); | |
3331 | |
1864
dfb38ea7da17
6988363: Rebrand vm vendor property settings (jdk7 only)
zgu
parents:
1731
diff
changeset
|
3332 // Update/Initialize System properties after JDK version number is known |
dfb38ea7da17
6988363: Rebrand vm vendor property settings (jdk7 only)
zgu
parents:
1731
diff
changeset
|
3333 Arguments::init_version_specific_system_properties(); |
dfb38ea7da17
6988363: Rebrand vm vendor property settings (jdk7 only)
zgu
parents:
1731
diff
changeset
|
3334 |
0 | 3335 // Parse arguments |
3336 jint parse_result = Arguments::parse(args); | |
3337 if (parse_result != JNI_OK) return parse_result; | |
3338 | |
12233
40136aa2cdb1
8010722: assert: failed: heap size is too big for compressed oops
tschatzl
parents:
12173
diff
changeset
|
3339 os::init_before_ergo(); |
40136aa2cdb1
8010722: assert: failed: heap size is too big for compressed oops
tschatzl
parents:
12173
diff
changeset
|
3340 |
40136aa2cdb1
8010722: assert: failed: heap size is too big for compressed oops
tschatzl
parents:
12173
diff
changeset
|
3341 jint ergo_result = Arguments::apply_ergo(); |
40136aa2cdb1
8010722: assert: failed: heap size is too big for compressed oops
tschatzl
parents:
12173
diff
changeset
|
3342 if (ergo_result != JNI_OK) return ergo_result; |
40136aa2cdb1
8010722: assert: failed: heap size is too big for compressed oops
tschatzl
parents:
12173
diff
changeset
|
3343 |
0 | 3344 if (PauseAtStartup) { |
3345 os::pause(); | |
3346 } | |
3347 | |
4006 | 3348 #ifndef USDT2 |
0 | 3349 HS_DTRACE_PROBE(hotspot, vm__init__begin); |
4006 | 3350 #else /* USDT2 */ |
3351 HOTSPOT_VM_INIT_BEGIN(); | |
3352 #endif /* USDT2 */ | |
0 | 3353 |
3354 // Record VM creation timing statistics | |
3355 TraceVmCreationTime create_vm_timer; | |
3356 create_vm_timer.start(); | |
3357 | |
3358 // Timing (must come after argument parsing) | |
3359 TraceTime timer("Create VM", TraceStartupTime); | |
3360 | |
3361 // Initialize the os module after parsing the args | |
3362 jint os_init_2_result = os::init_2(); | |
3363 if (os_init_2_result != JNI_OK) return os_init_2_result; | |
3364 | |
7177
53715fb1597d
7198334: UseNUMA modifies system parameters on non-NUMA system
brutisso
parents:
6985
diff
changeset
|
3365 jint adjust_after_os_result = Arguments::adjust_after_os(); |
53715fb1597d
7198334: UseNUMA modifies system parameters on non-NUMA system
brutisso
parents:
6985
diff
changeset
|
3366 if (adjust_after_os_result != JNI_OK) return adjust_after_os_result; |
53715fb1597d
7198334: UseNUMA modifies system parameters on non-NUMA system
brutisso
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6985
diff
changeset
|
3367 |
6197 | 3368 // intialize TLS |
3369 ThreadLocalStorage::init(); | |
3370 | |
3371 // Bootstrap native memory tracking, so it can start recording memory | |
3372 // activities before worker thread is started. This is the first phase | |
3373 // of bootstrapping, VM is currently running in single-thread mode. | |
3374 MemTracker::bootstrap_single_thread(); | |
3375 | |
0 | 3376 // Initialize output stream logging |
3377 ostream_init_log(); | |
3378 | |
3379 // Convert -Xrun to -agentlib: if there is no JVM_OnLoad | |
3380 // Must be before create_vm_init_agents() | |
3381 if (Arguments::init_libraries_at_startup()) { | |
3382 convert_vm_init_libraries_to_agents(); | |
3383 } | |
3384 | |
3385 // Launch -agentlib/-agentpath and converted -Xrun agents | |
3386 if (Arguments::init_agents_at_startup()) { | |
3387 create_vm_init_agents(); | |
3388 } | |
3389 | |
3390 // Initialize Threads state | |
3391 _thread_list = NULL; | |
3392 _number_of_threads = 0; | |
3393 _number_of_non_daemon_threads = 0; | |
3394 | |
3395 // Initialize global data structures and create system classes in heap | |
3396 vm_init_globals(); | |
3397 | |
3398 // Attach the main thread to this os thread | |
3399 JavaThread* main_thread = new JavaThread(); | |
3400 main_thread->set_thread_state(_thread_in_vm); | |
3401 // must do this before set_active_handles and initialize_thread_local_storage | |
3402 // Note: on solaris initialize_thread_local_storage() will (indirectly) | |
3403 // change the stack size recorded here to one based on the java thread | |
3404 // stacksize. This adjusted size is what is used to figure the placement | |
3405 // of the guard pages. | |
3406 main_thread->record_stack_base_and_size(); | |
3407 main_thread->initialize_thread_local_storage(); | |
3408 | |
3409 main_thread->set_active_handles(JNIHandleBlock::allocate_block()); | |
3410 | |
3411 if (!main_thread->set_as_starting_thread()) { | |
3412 vm_shutdown_during_initialization( | |
3413 "Failed necessary internal allocation. Out of swap space"); | |
3414 delete main_thread; | |
3415 *canTryAgain = false; // don't let caller call JNI_CreateJavaVM again | |
3416 return JNI_ENOMEM; | |
3417 } | |
3418 | |
3419 // Enable guard page *after* os::create_main_thread(), otherwise it would | |
3420 // crash Linux VM, see notes in os_linux.cpp. | |
3421 main_thread->create_stack_guard_pages(); | |
3422 | |
1878 | 3423 // Initialize Java-Level synchronization subsystem |
3424 ObjectMonitor::Initialize() ; | |
0 | 3425 |
6197 | 3426 // Second phase of bootstrapping, VM is about entering multi-thread mode |
3427 MemTracker::bootstrap_multi_thread(); | |
3428 | |
0 | 3429 // Initialize global modules |
3430 jint status = init_globals(); | |
3431 if (status != JNI_OK) { | |
3432 delete main_thread; | |
3433 *canTryAgain = false; // don't let caller call JNI_CreateJavaVM again | |
3434 return status; | |
3435 } | |
3436 | |
1681
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1608
diff
changeset
|
3437 // Should be done after the heap is fully created |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1608
diff
changeset
|
3438 main_thread->cache_global_variables(); |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1608
diff
changeset
|
3439 |
0 | 3440 HandleMark hm; |
3441 | |
3442 { MutexLocker mu(Threads_lock); | |
3443 Threads::add(main_thread); | |
3444 } | |
3445 | |
3446 // Any JVMTI raw monitors entered in onload will transition into | |
3447 // real raw monitor. VM is setup enough here for raw monitor enter. | |
3448 JvmtiExport::transition_pending_onload_raw_monitors(); | |
3449 | |
6197 | 3450 // Fully start NMT |
3451 MemTracker::start(); | |
3452 | |
0 | 3453 // Create the VMThread |
3454 { TraceTime timer("Start VMThread", TraceStartupTime); | |
3455 VMThread::create(); | |
3456 Thread* vmthread = VMThread::vm_thread(); | |
3457 | |
3458 if (!os::create_thread(vmthread, os::vm_thread)) | |
3459 vm_exit_during_initialization("Cannot create VM thread. Out of system resources."); | |
3460 | |
3461 // Wait for the VM thread to become ready, and VMThread::run to initialize | |
3462 // Monitors can have spurious returns, must always check another state flag | |
3463 { | |
3464 MutexLocker ml(Notify_lock); | |
3465 os::start_thread(vmthread); | |
3466 while (vmthread->active_handles() == NULL) { | |
3467 Notify_lock->wait(); | |
3468 } | |
3469 } | |
3470 } | |
3471 | |
3472 assert (Universe::is_fully_initialized(), "not initialized"); | |
9071
68fe50d4f1d5
8011343: Add new flag for verifying the heap during startup
johnc
parents:
8855
diff
changeset
|
3473 if (VerifyDuringStartup) { |
10186
b06ac540229e
8013132: Add a flag to turn off the output of the verbose verification code
stefank
parents:
9071
diff
changeset
|
3474 // Make sure we're starting with a clean slate. |
b06ac540229e
8013132: Add a flag to turn off the output of the verbose verification code
stefank
parents:
9071
diff
changeset
|
3475 VM_Verify verify_op; |
9071
68fe50d4f1d5
8011343: Add new flag for verifying the heap during startup
johnc
parents:
8855
diff
changeset
|
3476 VMThread::execute(&verify_op); |
8855
24ef5fb05e0f
8010463: G1: Crashes with -UseTLAB and heap verification
johnc
parents:
8793
diff
changeset
|
3477 } |
24ef5fb05e0f
8010463: G1: Crashes with -UseTLAB and heap verification
johnc
parents:
8793
diff
changeset
|
3478 |
0 | 3479 EXCEPTION_MARK; |
3480 | |
3481 // At this point, the Universe is initialized, but we have not executed | |
3482 // any byte code. Now is a good time (the only time) to dump out the | |
3483 // internal state of the JVM for sharing. | |
3484 if (DumpSharedSpaces) { | |
6725
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
3485 MetaspaceShared::preload_and_dump(CHECK_0); |
0 | 3486 ShouldNotReachHere(); |
3487 } | |
3488 | |
3489 // Always call even when there are not JVMTI environments yet, since environments | |
3490 // may be attached late and JVMTI must track phases of VM execution | |
3491 JvmtiExport::enter_start_phase(); | |
3492 | |
3493 // Notify JVMTI agents that VM has started (JNI is up) - nop if no agents. | |
3494 JvmtiExport::post_vm_start(); | |
3495 | |
3496 { | |
3497 TraceTime timer("Initialize java.lang classes", TraceStartupTime); | |
3498 | |
3499 if (EagerXrunInit && Arguments::init_libraries_at_startup()) { | |
3500 create_vm_init_libraries(); | |
3501 } | |
3502 | |
7608 | 3503 initialize_class(vmSymbols::java_lang_String(), CHECK_0); |
0 | 3504 |
3505 // Initialize java_lang.System (needed before creating the thread) | |
7608 | 3506 initialize_class(vmSymbols::java_lang_System(), CHECK_0); |
3507 initialize_class(vmSymbols::java_lang_ThreadGroup(), CHECK_0); | |
3508 Handle thread_group = create_initial_thread_group(CHECK_0); | |
3509 Universe::set_main_thread_group(thread_group()); | |
3510 initialize_class(vmSymbols::java_lang_Thread(), CHECK_0); | |
3511 oop thread_object = create_initial_thread(thread_group, main_thread, CHECK_0); | |
3512 main_thread->set_threadObj(thread_object); | |
3513 // Set thread status to running since main thread has | |
3514 // been started and running. | |
3515 java_lang_Thread::set_thread_status(thread_object, | |
3516 java_lang_Thread::RUNNABLE); | |
3517 | |
3518 // The VM creates & returns objects of this class. Make sure it's initialized. | |
3519 initialize_class(vmSymbols::java_lang_Class(), CHECK_0); | |
3520 | |
3521 // The VM preresolves methods to these classes. Make sure that they get initialized | |
3522 initialize_class(vmSymbols::java_lang_reflect_Method(), CHECK_0); | |
3523 initialize_class(vmSymbols::java_lang_ref_Finalizer(), CHECK_0); | |
3524 call_initializeSystemClass(CHECK_0); | |
3525 | |
3526 // get the Java runtime name after java.lang.System is initialized | |
3527 JDK_Version::set_runtime_name(get_java_runtime_name(THREAD)); | |
3528 JDK_Version::set_runtime_version(get_java_runtime_version(THREAD)); | |
0 | 3529 |
3530 // an instance of OutOfMemory exception has been allocated earlier | |
7608 | 3531 initialize_class(vmSymbols::java_lang_OutOfMemoryError(), CHECK_0); |
3532 initialize_class(vmSymbols::java_lang_NullPointerException(), CHECK_0); | |
3533 initialize_class(vmSymbols::java_lang_ClassCastException(), CHECK_0); | |
3534 initialize_class(vmSymbols::java_lang_ArrayStoreException(), CHECK_0); | |
3535 initialize_class(vmSymbols::java_lang_ArithmeticException(), CHECK_0); | |
3536 initialize_class(vmSymbols::java_lang_StackOverflowError(), CHECK_0); | |
3537 initialize_class(vmSymbols::java_lang_IllegalMonitorStateException(), CHECK_0); | |
3538 initialize_class(vmSymbols::java_lang_IllegalArgumentException(), CHECK_0); | |
2416
38fea01eb669
6817525: turn on method handle functionality by default for JSR 292
twisti
parents:
2376
diff
changeset
|
3539 } |
0 | 3540 |
3541 // See : bugid 4211085. | |
3542 // Background : the static initializer of java.lang.Compiler tries to read | |
3543 // property"java.compiler" and read & write property "java.vm.info". | |
3544 // When a security manager is installed through the command line | |
3545 // option "-Djava.security.manager", the above properties are not | |
3546 // readable and the static initializer for java.lang.Compiler fails | |
3547 // resulting in a NoClassDefFoundError. This can happen in any | |
3548 // user code which calls methods in java.lang.Compiler. | |
3549 // Hack : the hack is to pre-load and initialize this class, so that only | |
3550 // system domains are on the stack when the properties are read. | |
3551 // Currently even the AWT code has calls to methods in java.lang.Compiler. | |
3552 // On the classic VM, java.lang.Compiler is loaded very early to load the JIT. | |
3553 // Future Fix : the best fix is to grant everyone permissions to read "java.compiler" and | |
3554 // read and write"java.vm.info" in the default policy file. See bugid 4211383 | |
3555 // Once that is done, we should remove this hack. | |
2177
3582bf76420e
6990754: Use native memory and reference counting to implement SymbolTable
coleenp
parents:
2162
diff
changeset
|
3556 initialize_class(vmSymbols::java_lang_Compiler(), CHECK_0); |
0 | 3557 |
3558 // More hackery - the static initializer of java.lang.Compiler adds the string "nojit" to | |
3559 // the java.vm.info property if no jit gets loaded through java.lang.Compiler (the hotspot | |
3560 // compiler does not get loaded through java.lang.Compiler). "java -version" with the | |
3561 // hotspot vm says "nojit" all the time which is confusing. So, we reset it here. | |
3562 // This should also be taken out as soon as 4211383 gets fixed. | |
3563 reset_vm_info_property(CHECK_0); | |
3564 | |
3565 quicken_jni_functions(); | |
3566 | |
4932
f1cb6f9cfe21
7145243: Need additional specializations for argument parsing framework
fparain
parents:
4873
diff
changeset
|
3567 // Must be run after init_ft which initializes ft_enabled |
f1cb6f9cfe21
7145243: Need additional specializations for argument parsing framework
fparain
parents:
4873
diff
changeset
|
3568 if (TRACE_INITIALIZE() != JNI_OK) { |
f1cb6f9cfe21
7145243: Need additional specializations for argument parsing framework
fparain
parents:
4873
diff
changeset
|
3569 vm_exit_during_initialization("Failed to initialize tracing backend"); |
f1cb6f9cfe21
7145243: Need additional specializations for argument parsing framework
fparain
parents:
4873
diff
changeset
|
3570 } |
f1cb6f9cfe21
7145243: Need additional specializations for argument parsing framework
fparain
parents:
4873
diff
changeset
|
3571 |
0 | 3572 // Set flag that basic initialization has completed. Used by exceptions and various |
3573 // debug stuff, that does not work until all basic classes have been initialized. | |
3574 set_init_completed(); | |
3575 | |
4006 | 3576 #ifndef USDT2 |
0 | 3577 HS_DTRACE_PROBE(hotspot, vm__init__end); |
4006 | 3578 #else /* USDT2 */ |
3579 HOTSPOT_VM_INIT_END(); | |
3580 #endif /* USDT2 */ | |
0 | 3581 |
3582 // record VM initialization completion time | |
6854
fb19af007ffc
7189254: Change makefiles for more flexibility to override defaults
jprovino
parents:
6769
diff
changeset
|
3583 #if INCLUDE_MANAGEMENT |
0 | 3584 Management::record_vm_init_completed(); |
6854
fb19af007ffc
7189254: Change makefiles for more flexibility to override defaults
jprovino
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6769
diff
changeset
|
3585 #endif // INCLUDE_MANAGEMENT |
0 | 3586 |
3587 // Compute system loader. Note that this has to occur after set_init_completed, since | |
3588 // valid exceptions may be thrown in the process. | |
3589 // Note that we do not use CHECK_0 here since we are inside an EXCEPTION_MARK and | |
3590 // set_init_completed has just been called, causing exceptions not to be shortcut | |
3591 // anymore. We call vm_exit_during_initialization directly instead. | |
3592 SystemDictionary::compute_java_system_loader(THREAD); | |
3593 if (HAS_PENDING_EXCEPTION) { | |
3594 vm_exit_during_initialization(Handle(THREAD, PENDING_EXCEPTION)); | |
3595 } | |
3596 | |
8001
db9981fd3124
8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents:
7615
diff
changeset
|
3597 #if INCLUDE_ALL_GCS |
0 | 3598 // Support for ConcurrentMarkSweep. This should be cleaned up |
342
37f87013dfd8
6711316: Open source the Garbage-First garbage collector
ysr
parents:
62
diff
changeset
|
3599 // and better encapsulated. The ugly nested if test would go away |
37f87013dfd8
6711316: Open source the Garbage-First garbage collector
ysr
parents:
62
diff
changeset
|
3600 // once things are properly refactored. XXX YSR |
37f87013dfd8
6711316: Open source the Garbage-First garbage collector
ysr
parents:
62
diff
changeset
|
3601 if (UseConcMarkSweepGC || UseG1GC) { |
37f87013dfd8
6711316: Open source the Garbage-First garbage collector
ysr
parents:
62
diff
changeset
|
3602 if (UseConcMarkSweepGC) { |
37f87013dfd8
6711316: Open source the Garbage-First garbage collector
ysr
parents:
62
diff
changeset
|
3603 ConcurrentMarkSweepThread::makeSurrogateLockerThread(THREAD); |
37f87013dfd8
6711316: Open source the Garbage-First garbage collector
ysr
parents:
62
diff
changeset
|
3604 } else { |
37f87013dfd8
6711316: Open source the Garbage-First garbage collector
ysr
parents:
62
diff
changeset
|
3605 ConcurrentMarkThread::makeSurrogateLockerThread(THREAD); |
37f87013dfd8
6711316: Open source the Garbage-First garbage collector
ysr
parents:
62
diff
changeset
|
3606 } |
0 | 3607 if (HAS_PENDING_EXCEPTION) { |
3608 vm_exit_during_initialization(Handle(THREAD, PENDING_EXCEPTION)); | |
3609 } | |
3610 } | |
8001
db9981fd3124
8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents:
7615
diff
changeset
|
3611 #endif // INCLUDE_ALL_GCS |
0 | 3612 |
3613 // Always call even when there are not JVMTI environments yet, since environments | |
3614 // may be attached late and JVMTI must track phases of VM execution | |
3615 JvmtiExport::enter_live_phase(); | |
3616 | |
3617 // Signal Dispatcher needs to be started before VMInit event is posted | |
3618 os::signal_init(); | |
3619 | |
3620 // Start Attach Listener if +StartAttachListener or it can't be started lazily | |
3621 if (!DisableAttachMechanism) { | |
11139
2e8f19c2feef
7162400: Intermittent java.io.IOException: Bad file number during HotSpotVirtualMachine.executeCommand
allwin
parents:
11136
diff
changeset
|
3622 AttachListener::vm_start(); |
0 | 3623 if (StartAttachListener || AttachListener::init_at_startup()) { |
3624 AttachListener::init(); | |
3625 } | |
3626 } | |
3627 | |
3628 // Launch -Xrun agents | |
3629 // Must be done in the JVMTI live phase so that for backward compatibility the JDWP | |
3630 // back-end can launch with -Xdebug -Xrunjdwp. | |
3631 if (!EagerXrunInit && Arguments::init_libraries_at_startup()) { | |
3632 create_vm_init_libraries(); | |
3633 } | |
3634 | |
6002
df4cd4aac5c1
7160924: jvmti: GetPhase returns incorrect phase before VMInit event is issued
rbackman
parents:
5928
diff
changeset
|
3635 // Notify JVMTI agents that VM initialization is complete - nop if no agents. |
df4cd4aac5c1
7160924: jvmti: GetPhase returns incorrect phase before VMInit event is issued
rbackman
parents:
5928
diff
changeset
|
3636 JvmtiExport::post_vm_initialized(); |
df4cd4aac5c1
7160924: jvmti: GetPhase returns incorrect phase before VMInit event is issued
rbackman
parents:
5928
diff
changeset
|
3637 |
10405 | 3638 if (TRACE_START() != JNI_OK) { |
3639 vm_exit_during_initialization("Failed to start tracing backend."); | |
4800
94ec88ca68e2
7115199: Add event tracing hooks and Java Flight Recorder infrastructure
phh
parents:
4095
diff
changeset
|
3640 } |
94ec88ca68e2
7115199: Add event tracing hooks and Java Flight Recorder infrastructure
phh
parents:
4095
diff
changeset
|
3641 |
3799
48048b59a551
7061204: clean the chunk table synchronously in embedded builds
jcoomes
parents:
3769
diff
changeset
|
3642 if (CleanChunkPoolAsync) { |
48048b59a551
7061204: clean the chunk table synchronously in embedded builds
jcoomes
parents:
3769
diff
changeset
|
3643 Chunk::start_chunk_pool_cleaner_task(); |
48048b59a551
7061204: clean the chunk table synchronously in embedded builds
jcoomes
parents:
3769
diff
changeset
|
3644 } |
0 | 3645 |
3646 // initialize compiler(s) | |
7195 | 3647 #if defined(COMPILER1) || defined(COMPILER2) || defined(SHARK) |
0 | 3648 CompileBroker::compilation_init(); |
6854
fb19af007ffc
7189254: Change makefiles for more flexibility to override defaults
jprovino
parents:
6769
diff
changeset
|
3649 #endif |
fb19af007ffc
7189254: Change makefiles for more flexibility to override defaults
jprovino
parents:
6769
diff
changeset
|
3650 |
12163
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3651 if (EnableInvokeDynamic) { |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3652 // Pre-initialize some JSR292 core classes to avoid deadlock during class loading. |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3653 // It is done after compilers are initialized, because otherwise compilations of |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3654 // signature polymorphic MH intrinsics can be missed |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3655 // (see SystemDictionary::find_method_handle_intrinsic). |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3656 initialize_class(vmSymbols::java_lang_invoke_MethodHandle(), CHECK_0); |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3657 initialize_class(vmSymbols::java_lang_invoke_MemberName(), CHECK_0); |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3658 initialize_class(vmSymbols::java_lang_invoke_MethodHandleNatives(), CHECK_0); |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3659 } |
74608df95ba3
8022595: JSR292: deadlock during class loading of MethodHandles, MethodHandleImpl & MethodHandleNatives
vlivanov
parents:
11154
diff
changeset
|
3660 |
6854
fb19af007ffc
7189254: Change makefiles for more flexibility to override defaults
jprovino
parents:
6769
diff
changeset
|
3661 #if INCLUDE_MANAGEMENT |
0 | 3662 Management::initialize(THREAD); |
6854
fb19af007ffc
7189254: Change makefiles for more flexibility to override defaults
jprovino
parents:
6769
diff
changeset
|
3663 #endif // INCLUDE_MANAGEMENT |
fb19af007ffc
7189254: Change makefiles for more flexibility to override defaults
jprovino
parents:
6769
diff
changeset
|
3664 |
0 | 3665 if (HAS_PENDING_EXCEPTION) { |
3666 // management agent fails to start possibly due to | |
3667 // configuration problem and is responsible for printing | |
3668 // stack trace if appropriate. Simply exit VM. | |
3669 vm_exit(1); | |
3670 } | |
3671 | |
3672 if (Arguments::has_profile()) FlatProfiler::engage(main_thread, true); | |
3673 if (MemProfiling) MemProfiler::engage(); | |
3674 StatSampler::engage(); | |
3675 if (CheckJNICalls) JniPeriodicChecker::engage(); | |
3676 | |
3677 BiasedLocking::init(); | |
3678 | |
17780 | 3679 #if INCLUDE_RTM_OPT |
3680 RTMLockingCounters::init(); | |
3681 #endif | |
3682 | |
2129
8f8dfba37802
6994753: Implement optional hook to a Java method at VM startup.
kevinw
parents:
2126
diff
changeset
|
3683 if (JDK_Version::current().post_vm_init_hook_enabled()) { |
8f8dfba37802
6994753: Implement optional hook to a Java method at VM startup.
kevinw
parents:
2126
diff
changeset
|
3684 call_postVMInitHook(THREAD); |
8f8dfba37802
6994753: Implement optional hook to a Java method at VM startup.
kevinw
parents:
2126
diff
changeset
|
3685 // The Java side of PostVMInitHook.run must deal with all |
8f8dfba37802
6994753: Implement optional hook to a Java method at VM startup.
kevinw
parents:
2126
diff
changeset
|
3686 // exceptions and provide means of diagnosis. |
8f8dfba37802
6994753: Implement optional hook to a Java method at VM startup.
kevinw
parents:
2126
diff
changeset
|
3687 if (HAS_PENDING_EXCEPTION) { |
8f8dfba37802
6994753: Implement optional hook to a Java method at VM startup.
kevinw
parents:
2126
diff
changeset
|
3688 CLEAR_PENDING_EXCEPTION; |
8f8dfba37802
6994753: Implement optional hook to a Java method at VM startup.
kevinw
parents:
2126
diff
changeset
|
3689 } |
8f8dfba37802
6994753: Implement optional hook to a Java method at VM startup.
kevinw
parents:
2126
diff
changeset
|
3690 } |
0 | 3691 |
6939
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3692 { |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3693 MutexLockerEx ml(PeriodicTask_lock, Mutex::_no_safepoint_check_flag); |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3694 // Make sure the watcher thread can be started by WatcherThread::start() |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3695 // or by dynamic enrollment. |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3696 WatcherThread::make_startable(); |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3697 // Start up the WatcherThread if there are any periodic tasks |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3698 // NOTE: All PeriodicTasks should be registered by now. If they |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3699 // aren't, late joiners might appear to start slowly (we might |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3700 // take a while to process their first tick). |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3701 if (PeriodicTask::num_tasks() > 0) { |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3702 WatcherThread::start(); |
c284cf4781f0
7127792: Add the ability to change an existing PeriodicTask's execution interval
rbackman
parents:
6921
diff
changeset
|
3703 } |
0 | 3704 } |
3705 | |
1681
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1608
diff
changeset
|
3706 // Give os specific code one last chance to start |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1608
diff
changeset
|
3707 os::init_3(); |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1608
diff
changeset
|
3708 |
0 | 3709 create_vm_timer.end(); |
6725
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
3710 #ifdef ASSERT |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
3711 _vm_complete = true; |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
3712 #endif |
0 | 3713 return JNI_OK; |
3714 } | |
3715 | |
3716 // type for the Agent_OnLoad and JVM_OnLoad entry points | |
3717 extern "C" { | |
3718 typedef jint (JNICALL *OnLoadEntry_t)(JavaVM *, char *, void *); | |
3719 } | |
3720 // Find a command line agent library and return its entry point for | |
3721 // -agentlib: -agentpath: -Xrun | |
3722 // num_symbol_entries must be passed-in since only the caller knows the number of symbols in the array. | |
3723 static OnLoadEntry_t lookup_on_load(AgentLibrary* agent, const char *on_load_symbols[], size_t num_symbol_entries) { | |
3724 OnLoadEntry_t on_load_entry = NULL; | |
12117
f92b82d454fa
8014135: The JVMTI specification does not conform to recent changes in JNI specification
bpittore
parents:
11154
diff
changeset
|
3725 void *library = NULL; |
f92b82d454fa
8014135: The JVMTI specification does not conform to recent changes in JNI specification
bpittore
parents:
11154
diff
changeset
|
3726 |
f92b82d454fa
8014135: The JVMTI specification does not conform to recent changes in JNI specification
bpittore
parents:
11154
diff
changeset
|
3727 if (!agent->valid()) { |
0 | 3728 char buffer[JVM_MAXPATHLEN]; |
3729 char ebuf[1024]; | |
3730 const char *name = agent->name(); | |
1694
ab3fd720516c
6378314: Bad warning message when agent library not found. local directory is not searched.
rasbold
parents:
1681
diff
changeset
|
3731 const char *msg = "Could not find agent library "; |
0 | 3732 |
12220 | 3733 // First check to see if agent is statically linked into executable |
12117
f92b82d454fa
8014135: The JVMTI specification does not conform to recent changes in JNI specification
bpittore
parents:
11154
diff
changeset
|
3734 if (os::find_builtin_agent(agent, on_load_symbols, num_symbol_entries)) { |
f92b82d454fa
8014135: The JVMTI specification does not conform to recent changes in JNI specification
bpittore
parents:
11154
diff
changeset
|
3735 library = agent->os_lib(); |
f92b82d454fa
8014135: The JVMTI specification does not conform to recent changes in JNI specification
bpittore
parents:
11154
diff
changeset
|
3736 } else if (agent->is_absolute_path()) { |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
3737 library = os::dll_load(name, ebuf, sizeof ebuf); |
0 | 3738 if (library == NULL) { |
1694
ab3fd720516c
6378314: Bad warning message when agent library not found. local directory is not searched.
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parents:
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3739 const char *sub_msg = " in absolute path, with error: "; |
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3740 size_t len = strlen(msg) + strlen(name) + strlen(sub_msg) + strlen(ebuf) + 1; |
6197 | 3741 char *buf = NEW_C_HEAP_ARRAY(char, len, mtThread); |
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3742 jio_snprintf(buf, len, "%s%s%s%s", msg, name, sub_msg, ebuf); |
0 | 3743 // If we can't find the agent, exit. |
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3744 vm_exit_during_initialization(buf, NULL); |
6197 | 3745 FREE_C_HEAP_ARRAY(char, buf, mtThread); |
0 | 3746 } |
3747 } else { | |
3748 // Try to load the agent from the standard dll directory | |
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3749 if (os::dll_build_name(buffer, sizeof(buffer), Arguments::get_dll_dir(), |
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3750 name)) { |
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3751 library = os::dll_load(buffer, ebuf, sizeof ebuf); |
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3752 } |
0 | 3753 if (library == NULL) { // Try the local directory |
3754 char ns[1] = {0}; | |
6966
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3755 if (os::dll_build_name(buffer, sizeof(buffer), ns, name)) { |
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3756 library = os::dll_load(buffer, ebuf, sizeof ebuf); |
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3757 } |
0 | 3758 if (library == NULL) { |
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3759 const char *sub_msg = " on the library path, with error: "; |
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3760 size_t len = strlen(msg) + strlen(name) + strlen(sub_msg) + strlen(ebuf) + 1; |
6197 | 3761 char *buf = NEW_C_HEAP_ARRAY(char, len, mtThread); |
1694
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|
3762 jio_snprintf(buf, len, "%s%s%s%s", msg, name, sub_msg, ebuf); |
0 | 3763 // If we can't find the agent, exit. |
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|
3764 vm_exit_during_initialization(buf, NULL); |
6197 | 3765 FREE_C_HEAP_ARRAY(char, buf, mtThread); |
0 | 3766 } |
3767 } | |
3768 } | |
3769 agent->set_os_lib(library); | |
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3770 agent->set_valid(); |
0 | 3771 } |
3772 | |
3773 // Find the OnLoad function. | |
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3774 on_load_entry = |
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3775 CAST_TO_FN_PTR(OnLoadEntry_t, os::find_agent_function(agent, |
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|
3776 false, |
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|
3777 on_load_symbols, |
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3778 num_symbol_entries)); |
0 | 3779 return on_load_entry; |
3780 } | |
3781 | |
3782 // Find the JVM_OnLoad entry point | |
3783 static OnLoadEntry_t lookup_jvm_on_load(AgentLibrary* agent) { | |
3784 const char *on_load_symbols[] = JVM_ONLOAD_SYMBOLS; | |
3785 return lookup_on_load(agent, on_load_symbols, sizeof(on_load_symbols) / sizeof(char*)); | |
3786 } | |
3787 | |
3788 // Find the Agent_OnLoad entry point | |
3789 static OnLoadEntry_t lookup_agent_on_load(AgentLibrary* agent) { | |
3790 const char *on_load_symbols[] = AGENT_ONLOAD_SYMBOLS; | |
3791 return lookup_on_load(agent, on_load_symbols, sizeof(on_load_symbols) / sizeof(char*)); | |
3792 } | |
3793 | |
3794 // For backwards compatibility with -Xrun | |
3795 // Convert libraries with no JVM_OnLoad, but which have Agent_OnLoad to be | |
3796 // treated like -agentpath: | |
3797 // Must be called before agent libraries are created | |
3798 void Threads::convert_vm_init_libraries_to_agents() { | |
3799 AgentLibrary* agent; | |
3800 AgentLibrary* next; | |
3801 | |
3802 for (agent = Arguments::libraries(); agent != NULL; agent = next) { | |
3803 next = agent->next(); // cache the next agent now as this agent may get moved off this list | |
3804 OnLoadEntry_t on_load_entry = lookup_jvm_on_load(agent); | |
3805 | |
3806 // If there is an JVM_OnLoad function it will get called later, | |
3807 // otherwise see if there is an Agent_OnLoad | |
3808 if (on_load_entry == NULL) { | |
3809 on_load_entry = lookup_agent_on_load(agent); | |
3810 if (on_load_entry != NULL) { | |
3811 // switch it to the agent list -- so that Agent_OnLoad will be called, | |
3812 // JVM_OnLoad won't be attempted and Agent_OnUnload will | |
3813 Arguments::convert_library_to_agent(agent); | |
3814 } else { | |
3815 vm_exit_during_initialization("Could not find JVM_OnLoad or Agent_OnLoad function in the library", agent->name()); | |
3816 } | |
3817 } | |
3818 } | |
3819 } | |
3820 | |
3821 // Create agents for -agentlib: -agentpath: and converted -Xrun | |
3822 // Invokes Agent_OnLoad | |
3823 // Called very early -- before JavaThreads exist | |
3824 void Threads::create_vm_init_agents() { | |
3825 extern struct JavaVM_ main_vm; | |
3826 AgentLibrary* agent; | |
3827 | |
3828 JvmtiExport::enter_onload_phase(); | |
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3829 |
0 | 3830 for (agent = Arguments::agents(); agent != NULL; agent = agent->next()) { |
3831 OnLoadEntry_t on_load_entry = lookup_agent_on_load(agent); | |
3832 | |
3833 if (on_load_entry != NULL) { | |
3834 // Invoke the Agent_OnLoad function | |
3835 jint err = (*on_load_entry)(&main_vm, agent->options(), NULL); | |
3836 if (err != JNI_OK) { | |
3837 vm_exit_during_initialization("agent library failed to init", agent->name()); | |
3838 } | |
3839 } else { | |
3840 vm_exit_during_initialization("Could not find Agent_OnLoad function in the agent library", agent->name()); | |
3841 } | |
3842 } | |
3843 JvmtiExport::enter_primordial_phase(); | |
3844 } | |
3845 | |
3846 extern "C" { | |
3847 typedef void (JNICALL *Agent_OnUnload_t)(JavaVM *); | |
3848 } | |
3849 | |
3850 void Threads::shutdown_vm_agents() { | |
3851 // Send any Agent_OnUnload notifications | |
3852 const char *on_unload_symbols[] = AGENT_ONUNLOAD_SYMBOLS; | |
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3853 size_t num_symbol_entries = ARRAY_SIZE(on_unload_symbols); |
0 | 3854 extern struct JavaVM_ main_vm; |
3855 for (AgentLibrary* agent = Arguments::agents(); agent != NULL; agent = agent->next()) { | |
3856 | |
3857 // Find the Agent_OnUnload function. | |
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3858 Agent_OnUnload_t unload_entry = CAST_TO_FN_PTR(Agent_OnUnload_t, |
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3859 os::find_agent_function(agent, |
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|
3860 false, |
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|
3861 on_unload_symbols, |
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|
3862 num_symbol_entries)); |
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|
3863 |
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|
3864 // Invoke the Agent_OnUnload function |
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|
3865 if (unload_entry != NULL) { |
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3866 JavaThread* thread = JavaThread::current(); |
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3867 ThreadToNativeFromVM ttn(thread); |
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3868 HandleMark hm(thread); |
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3869 (*unload_entry)(&main_vm); |
0 | 3870 } |
3871 } | |
3872 } | |
3873 | |
3874 // Called for after the VM is initialized for -Xrun libraries which have not been converted to agent libraries | |
3875 // Invokes JVM_OnLoad | |
3876 void Threads::create_vm_init_libraries() { | |
3877 extern struct JavaVM_ main_vm; | |
3878 AgentLibrary* agent; | |
3879 | |
3880 for (agent = Arguments::libraries(); agent != NULL; agent = agent->next()) { | |
3881 OnLoadEntry_t on_load_entry = lookup_jvm_on_load(agent); | |
3882 | |
3883 if (on_load_entry != NULL) { | |
3884 // Invoke the JVM_OnLoad function | |
3885 JavaThread* thread = JavaThread::current(); | |
3886 ThreadToNativeFromVM ttn(thread); | |
3887 HandleMark hm(thread); | |
3888 jint err = (*on_load_entry)(&main_vm, agent->options(), NULL); | |
3889 if (err != JNI_OK) { | |
3890 vm_exit_during_initialization("-Xrun library failed to init", agent->name()); | |
3891 } | |
3892 } else { | |
3893 vm_exit_during_initialization("Could not find JVM_OnLoad function in -Xrun library", agent->name()); | |
3894 } | |
3895 } | |
3896 } | |
3897 | |
3898 // Last thread running calls java.lang.Shutdown.shutdown() | |
3899 void JavaThread::invoke_shutdown_hooks() { | |
3900 HandleMark hm(this); | |
3901 | |
3902 // We could get here with a pending exception, if so clear it now. | |
3903 if (this->has_pending_exception()) { | |
3904 this->clear_pending_exception(); | |
3905 } | |
3906 | |
3907 EXCEPTION_MARK; | |
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3908 Klass* k = |
2177
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3909 SystemDictionary::resolve_or_null(vmSymbols::java_lang_Shutdown(), |
0 | 3910 THREAD); |
3911 if (k != NULL) { | |
3912 // SystemDictionary::resolve_or_null will return null if there was | |
3913 // an exception. If we cannot load the Shutdown class, just don't | |
3914 // call Shutdown.shutdown() at all. This will mean the shutdown hooks | |
3915 // and finalizers (if runFinalizersOnExit is set) won't be run. | |
3916 // Note that if a shutdown hook was registered or runFinalizersOnExit | |
3917 // was called, the Shutdown class would have already been loaded | |
3918 // (Runtime.addShutdownHook and runFinalizersOnExit will load it). | |
3919 instanceKlassHandle shutdown_klass (THREAD, k); | |
3920 JavaValue result(T_VOID); | |
3921 JavaCalls::call_static(&result, | |
3922 shutdown_klass, | |
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3923 vmSymbols::shutdown_method_name(), |
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3924 vmSymbols::void_method_signature(), |
0 | 3925 THREAD); |
3926 } | |
3927 CLEAR_PENDING_EXCEPTION; | |
3928 } | |
3929 | |
3930 // Threads::destroy_vm() is normally called from jni_DestroyJavaVM() when | |
3931 // the program falls off the end of main(). Another VM exit path is through | |
3932 // vm_exit() when the program calls System.exit() to return a value or when | |
3933 // there is a serious error in VM. The two shutdown paths are not exactly | |
3934 // the same, but they share Shutdown.shutdown() at Java level and before_exit() | |
3935 // and VM_Exit op at VM level. | |
3936 // | |
3937 // Shutdown sequence: | |
6197 | 3938 // + Shutdown native memory tracking if it is on |
0 | 3939 // + Wait until we are the last non-daemon thread to execute |
3940 // <-- every thing is still working at this moment --> | |
3941 // + Call java.lang.Shutdown.shutdown(), which will invoke Java level | |
3942 // shutdown hooks, run finalizers if finalization-on-exit | |
3943 // + Call before_exit(), prepare for VM exit | |
3944 // > run VM level shutdown hooks (they are registered through JVM_OnExit(), | |
3945 // currently the only user of this mechanism is File.deleteOnExit()) | |
3946 // > stop flat profiler, StatSampler, watcher thread, CMS threads, | |
3947 // post thread end and vm death events to JVMTI, | |
3948 // stop signal thread | |
3949 // + Call JavaThread::exit(), it will: | |
3950 // > release JNI handle blocks, remove stack guard pages | |
3951 // > remove this thread from Threads list | |
3952 // <-- no more Java code from this thread after this point --> | |
3953 // + Stop VM thread, it will bring the remaining VM to a safepoint and stop | |
3954 // the compiler threads at safepoint | |
3955 // <-- do not use anything that could get blocked by Safepoint --> | |
3956 // + Disable tracing at JNI/JVM barriers | |
3957 // + Set _vm_exited flag for threads that are still running native code | |
3958 // + Delete this thread | |
3959 // + Call exit_globals() | |
3960 // > deletes tty | |
3961 // > deletes PerfMemory resources | |
3962 // + Return to caller | |
3963 | |
3964 bool Threads::destroy_vm() { | |
3965 JavaThread* thread = JavaThread::current(); | |
3966 | |
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3967 #ifdef ASSERT |
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3968 _vm_complete = false; |
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3969 #endif |
0 | 3970 // Wait until we are the last non-daemon thread to execute |
3971 { MutexLocker nu(Threads_lock); | |
3972 while (Threads::number_of_non_daemon_threads() > 1 ) | |
3973 // This wait should make safepoint checks, wait without a timeout, | |
3974 // and wait as a suspend-equivalent condition. | |
3975 // | |
3976 // Note: If the FlatProfiler is running and this thread is waiting | |
3977 // for another non-daemon thread to finish, then the FlatProfiler | |
3978 // is waiting for the external suspend request on this thread to | |
3979 // complete. wait_for_ext_suspend_completion() will eventually | |
3980 // timeout, but that takes time. Making this wait a suspend- | |
3981 // equivalent condition solves that timeout problem. | |
3982 // | |
3983 Threads_lock->wait(!Mutex::_no_safepoint_check_flag, 0, | |
3984 Mutex::_as_suspend_equivalent_flag); | |
3985 } | |
3986 | |
3987 // Hang forever on exit if we are reporting an error. | |
3988 if (ShowMessageBoxOnError && is_error_reported()) { | |
3989 os::infinite_sleep(); | |
3990 } | |
2302
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3991 os::wait_for_keypress_at_exit(); |
0 | 3992 |
3993 if (JDK_Version::is_jdk12x_version()) { | |
3994 // We are the last thread running, so check if finalizers should be run. | |
3995 // For 1.3 or later this is done in thread->invoke_shutdown_hooks() | |
3996 HandleMark rm(thread); | |
3997 Universe::run_finalizers_on_exit(); | |
3998 } else { | |
3999 // run Java level shutdown hooks | |
4000 thread->invoke_shutdown_hooks(); | |
4001 } | |
4002 | |
4003 before_exit(thread); | |
4004 | |
4005 thread->exit(true); | |
4006 | |
4007 // Stop VM thread. | |
4008 { | |
4009 // 4945125 The vm thread comes to a safepoint during exit. | |
4010 // GC vm_operations can get caught at the safepoint, and the | |
4011 // heap is unparseable if they are caught. Grab the Heap_lock | |
4012 // to prevent this. The GC vm_operations will not be able to | |
4013 // queue until after the vm thread is dead. | |
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4014 // After this point, we'll never emerge out of the safepoint before |
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4015 // the VM exits, so concurrent GC threads do not need to be explicitly |
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4016 // stopped; they remain inactive until the process exits. |
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4017 // Note: some concurrent G1 threads may be running during a safepoint, |
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4018 // but these will not be accessing the heap, just some G1-specific side |
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4019 // data structures that are not accessed by any other threads but them |
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4020 // after this point in a terminal safepoint. |
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4021 |
0 | 4022 MutexLocker ml(Heap_lock); |
4023 | |
4024 VMThread::wait_for_vm_thread_exit(); | |
4025 assert(SafepointSynchronize::is_at_safepoint(), "VM thread should exit at Safepoint"); | |
4026 VMThread::destroy(); | |
4027 } | |
4028 | |
4029 // clean up ideal graph printers | |
4030 #if defined(COMPILER2) && !defined(PRODUCT) | |
4031 IdealGraphPrinter::clean_up(); | |
4032 #endif | |
4033 | |
4034 // Now, all Java threads are gone except daemon threads. Daemon threads | |
4035 // running Java code or in VM are stopped by the Safepoint. However, | |
4036 // daemon threads executing native code are still running. But they | |
4037 // will be stopped at native=>Java/VM barriers. Note that we can't | |
4038 // simply kill or suspend them, as it is inherently deadlock-prone. | |
4039 | |
4040 #ifndef PRODUCT | |
4041 // disable function tracing at JNI/JVM barriers | |
4042 TraceJNICalls = false; | |
4043 TraceJVMCalls = false; | |
4044 TraceRuntimeCalls = false; | |
4045 #endif | |
4046 | |
4047 VM_Exit::set_vm_exited(); | |
4048 | |
4049 notify_vm_shutdown(); | |
4050 | |
4051 delete thread; | |
4052 | |
4053 // exit_globals() will delete tty | |
4054 exit_globals(); | |
4055 | |
4056 return true; | |
4057 } | |
4058 | |
4059 | |
4060 jboolean Threads::is_supported_jni_version_including_1_1(jint version) { | |
4061 if (version == JNI_VERSION_1_1) return JNI_TRUE; | |
4062 return is_supported_jni_version(version); | |
4063 } | |
4064 | |
4065 | |
4066 jboolean Threads::is_supported_jni_version(jint version) { | |
4067 if (version == JNI_VERSION_1_2) return JNI_TRUE; | |
4068 if (version == JNI_VERSION_1_4) return JNI_TRUE; | |
4069 if (version == JNI_VERSION_1_6) return JNI_TRUE; | |
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4070 if (version == JNI_VERSION_1_8) return JNI_TRUE; |
0 | 4071 return JNI_FALSE; |
4072 } | |
4073 | |
4074 | |
4075 void Threads::add(JavaThread* p, bool force_daemon) { | |
4076 // The threads lock must be owned at this point | |
4077 assert_locked_or_safepoint(Threads_lock); | |
1842
6e0aac35bfa9
6980838: G1: guarantee(false) failed: thread has an unexpected active value in its SATB queue
tonyp
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1838
diff
changeset
|
4078 |
6e0aac35bfa9
6980838: G1: guarantee(false) failed: thread has an unexpected active value in its SATB queue
tonyp
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1838
diff
changeset
|
4079 // See the comment for this method in thread.hpp for its purpose and |
6e0aac35bfa9
6980838: G1: guarantee(false) failed: thread has an unexpected active value in its SATB queue
tonyp
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1838
diff
changeset
|
4080 // why it is called here. |
6e0aac35bfa9
6980838: G1: guarantee(false) failed: thread has an unexpected active value in its SATB queue
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diff
changeset
|
4081 p->initialize_queues(); |
0 | 4082 p->set_next(_thread_list); |
4083 _thread_list = p; | |
4084 _number_of_threads++; | |
4085 oop threadObj = p->threadObj(); | |
4086 bool daemon = true; | |
4087 // Bootstrapping problem: threadObj can be null for initial | |
4088 // JavaThread (or for threads attached via JNI) | |
4089 if ((!force_daemon) && (threadObj == NULL || !java_lang_Thread::is_daemon(threadObj))) { | |
4090 _number_of_non_daemon_threads++; | |
4091 daemon = false; | |
4092 } | |
4093 | |
6197 | 4094 p->set_safepoint_visible(true); |
4095 | |
0 | 4096 ThreadService::add_thread(p, daemon); |
4097 | |
4098 // Possible GC point. | |
4872
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7141200: log some interesting information in ring buffers for crashes
never
parents:
4800
diff
changeset
|
4099 Events::log(p, "Thread added: " INTPTR_FORMAT, p); |
0 | 4100 } |
4101 | |
4102 void Threads::remove(JavaThread* p) { | |
4103 // Extra scope needed for Thread_lock, so we can check | |
4104 // that we do not remove thread without safepoint code notice | |
4105 { MutexLocker ml(Threads_lock); | |
4106 | |
4107 assert(includes(p), "p must be present"); | |
4108 | |
4109 JavaThread* current = _thread_list; | |
4110 JavaThread* prev = NULL; | |
4111 | |
4112 while (current != p) { | |
4113 prev = current; | |
4114 current = current->next(); | |
4115 } | |
4116 | |
4117 if (prev) { | |
4118 prev->set_next(current->next()); | |
4119 } else { | |
4120 _thread_list = p->next(); | |
4121 } | |
4122 _number_of_threads--; | |
4123 oop threadObj = p->threadObj(); | |
4124 bool daemon = true; | |
4125 if (threadObj == NULL || !java_lang_Thread::is_daemon(threadObj)) { | |
4126 _number_of_non_daemon_threads--; | |
4127 daemon = false; | |
4128 | |
4129 // Only one thread left, do a notify on the Threads_lock so a thread waiting | |
4130 // on destroy_vm will wake up. | |
4131 if (number_of_non_daemon_threads() == 1) | |
4132 Threads_lock->notify_all(); | |
4133 } | |
4134 ThreadService::remove_thread(p, daemon); | |
4135 | |
4136 // Make sure that safepoint code disregard this thread. This is needed since | |
4137 // the thread might mess around with locks after this point. This can cause it | |
4138 // to do callbacks into the safepoint code. However, the safepoint code is not aware | |
4139 // of this thread since it is removed from the queue. | |
4140 p->set_terminated_value(); | |
6197 | 4141 |
4142 // Now, this thread is not visible to safepoint | |
4143 p->set_safepoint_visible(false); | |
6882
716c64bda5ba
7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
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6872
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|
4144 // once the thread becomes safepoint invisible, we can not use its per-thread |
716c64bda5ba
7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
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6872
diff
changeset
|
4145 // recorder. And Threads::do_threads() no longer walks this thread, so we have |
716c64bda5ba
7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
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6872
diff
changeset
|
4146 // to release its per-thread recorder here. |
716c64bda5ba
7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
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diff
changeset
|
4147 MemTracker::thread_exiting(p); |
0 | 4148 } // unlock Threads_lock |
4149 | |
4150 // Since Events::log uses a lock, we grab it outside the Threads_lock | |
4872
aa3d708d67c4
7141200: log some interesting information in ring buffers for crashes
never
parents:
4800
diff
changeset
|
4151 Events::log(p, "Thread exited: " INTPTR_FORMAT, p); |
0 | 4152 } |
4153 | |
4154 // Threads_lock must be held when this is called (or must be called during a safepoint) | |
4155 bool Threads::includes(JavaThread* p) { | |
4156 assert(Threads_lock->is_locked(), "sanity check"); | |
4157 ALL_JAVA_THREADS(q) { | |
4158 if (q == p ) { | |
4159 return true; | |
4160 } | |
4161 } | |
4162 return false; | |
4163 } | |
4164 | |
4165 // Operations on the Threads list for GC. These are not explicitly locked, | |
4166 // but the garbage collector must provide a safe context for them to run. | |
4167 // In particular, these things should never be called when the Threads_lock | |
4168 // is held by some other thread. (Note: the Safepoint abstraction also | |
4169 // uses the Threads_lock to gurantee this property. It also makes sure that | |
4170 // all threads gets blocked when exiting or starting). | |
4171 | |
7179
d0aa87f04bd5
8003720: NPG: Method in interpreter stack frame can be deallocated
stefank
parents:
7177
diff
changeset
|
4172 void Threads::oops_do(OopClosure* f, CLDToOopClosure* cld_f, CodeBlobClosure* cf) { |
0 | 4173 ALL_JAVA_THREADS(p) { |
7179
d0aa87f04bd5
8003720: NPG: Method in interpreter stack frame can be deallocated
stefank
parents:
7177
diff
changeset
|
4174 p->oops_do(f, cld_f, cf); |
0 | 4175 } |
7179
d0aa87f04bd5
8003720: NPG: Method in interpreter stack frame can be deallocated
stefank
parents:
7177
diff
changeset
|
4176 VMThread::vm_thread()->oops_do(f, cld_f, cf); |
0 | 4177 } |
4178 | |
7179
d0aa87f04bd5
8003720: NPG: Method in interpreter stack frame can be deallocated
stefank
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7177
diff
changeset
|
4179 void Threads::possibly_parallel_oops_do(OopClosure* f, CLDToOopClosure* cld_f, CodeBlobClosure* cf) { |
0 | 4180 // Introduce a mechanism allowing parallel threads to claim threads as |
4181 // root groups. Overhead should be small enough to use all the time, | |
4182 // even in sequential code. | |
4183 SharedHeap* sh = SharedHeap::heap(); | |
4095
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
jmasa
parents:
4042
diff
changeset
|
4184 // Cannot yet substitute active_workers for n_par_threads |
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
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diff
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|
4185 // because of G1CollectedHeap::verify() use of |
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
jmasa
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diff
changeset
|
4186 // SharedHeap::process_strong_roots(). n_par_threads == 0 will |
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
jmasa
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4042
diff
changeset
|
4187 // turn off parallelism in process_strong_roots while active_workers |
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
jmasa
parents:
4042
diff
changeset
|
4188 // is being used for parallelism elsewhere. |
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
jmasa
parents:
4042
diff
changeset
|
4189 bool is_par = sh->n_par_threads() > 0; |
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
jmasa
parents:
4042
diff
changeset
|
4190 assert(!is_par || |
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
jmasa
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4042
diff
changeset
|
4191 (SharedHeap::heap()->n_par_threads() == |
bca17e38de00
6593758: RFE: Enhance GC ergonomics to dynamically choose ParallelGCThreads
jmasa
parents:
4042
diff
changeset
|
4192 SharedHeap::heap()->workers()->active_workers()), "Mismatch"); |
0 | 4193 int cp = SharedHeap::heap()->strong_roots_parity(); |
4194 ALL_JAVA_THREADS(p) { | |
4195 if (p->claim_oops_do(is_par, cp)) { | |
7179
d0aa87f04bd5
8003720: NPG: Method in interpreter stack frame can be deallocated
stefank
parents:
7177
diff
changeset
|
4196 p->oops_do(f, cld_f, cf); |
0 | 4197 } |
4198 } | |
4199 VMThread* vmt = VMThread::vm_thread(); | |
3979
4dfb2df418f2
6484982: G1: process references during evacuation pauses
johnc
parents:
3938
diff
changeset
|
4200 if (vmt->claim_oops_do(is_par, cp)) { |
7179
d0aa87f04bd5
8003720: NPG: Method in interpreter stack frame can be deallocated
stefank
parents:
7177
diff
changeset
|
4201 vmt->oops_do(f, cld_f, cf); |
3979
4dfb2df418f2
6484982: G1: process references during evacuation pauses
johnc
parents:
3938
diff
changeset
|
4202 } |
0 | 4203 } |
4204 | |
8001
db9981fd3124
8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents:
7615
diff
changeset
|
4205 #if INCLUDE_ALL_GCS |
0 | 4206 // Used by ParallelScavenge |
4207 void Threads::create_thread_roots_tasks(GCTaskQueue* q) { | |
4208 ALL_JAVA_THREADS(p) { | |
4209 q->enqueue(new ThreadRootsTask(p)); | |
4210 } | |
4211 q->enqueue(new ThreadRootsTask(VMThread::vm_thread())); | |
4212 } | |
4213 | |
4214 // Used by Parallel Old | |
4215 void Threads::create_thread_roots_marking_tasks(GCTaskQueue* q) { | |
4216 ALL_JAVA_THREADS(p) { | |
4217 q->enqueue(new ThreadRootsMarkingTask(p)); | |
4218 } | |
4219 q->enqueue(new ThreadRootsMarkingTask(VMThread::vm_thread())); | |
4220 } | |
8001
db9981fd3124
8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents:
7615
diff
changeset
|
4221 #endif // INCLUDE_ALL_GCS |
0 | 4222 |
989
148e5441d916
6863023: need non-perm oops in code cache for JSR 292
jrose
parents:
844
diff
changeset
|
4223 void Threads::nmethods_do(CodeBlobClosure* cf) { |
0 | 4224 ALL_JAVA_THREADS(p) { |
989
148e5441d916
6863023: need non-perm oops in code cache for JSR 292
jrose
parents:
844
diff
changeset
|
4225 p->nmethods_do(cf); |
0 | 4226 } |
989
148e5441d916
6863023: need non-perm oops in code cache for JSR 292
jrose
parents:
844
diff
changeset
|
4227 VMThread::vm_thread()->nmethods_do(cf); |
0 | 4228 } |
4229 | |
6725
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
4230 void Threads::metadata_do(void f(Metadata*)) { |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
4231 ALL_JAVA_THREADS(p) { |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
4232 p->metadata_do(f); |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
4233 } |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
4234 } |
da91efe96a93
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
6198
diff
changeset
|
4235 |
0 | 4236 void Threads::gc_epilogue() { |
4237 ALL_JAVA_THREADS(p) { | |
4238 p->gc_epilogue(); | |
4239 } | |
4240 } | |
4241 | |
4242 void Threads::gc_prologue() { | |
4243 ALL_JAVA_THREADS(p) { | |
4244 p->gc_prologue(); | |
4245 } | |
4246 } | |
4247 | |
4248 void Threads::deoptimized_wrt_marked_nmethods() { | |
4249 ALL_JAVA_THREADS(p) { | |
4250 p->deoptimized_wrt_marked_nmethods(); | |
4251 } | |
4252 } | |
4253 | |
4254 | |
4255 // Get count Java threads that are waiting to enter the specified monitor. | |
4256 GrowableArray<JavaThread*>* Threads::get_pending_threads(int count, | |
4257 address monitor, bool doLock) { | |
4258 assert(doLock || SafepointSynchronize::is_at_safepoint(), | |
4259 "must grab Threads_lock or be at safepoint"); | |
4260 GrowableArray<JavaThread*>* result = new GrowableArray<JavaThread*>(count); | |
4261 | |
4262 int i = 0; | |
4263 { | |
4264 MutexLockerEx ml(doLock ? Threads_lock : NULL); | |
4265 ALL_JAVA_THREADS(p) { | |
4266 if (p->is_Compiler_thread()) continue; | |
4267 | |
4268 address pending = (address)p->current_pending_monitor(); | |
4269 if (pending == monitor) { // found a match | |
4270 if (i < count) result->append(p); // save the first count matches | |
4271 i++; | |
4272 } | |
4273 } | |
4274 } | |
4275 return result; | |
4276 } | |
4277 | |
4278 | |
4279 JavaThread *Threads::owning_thread_from_monitor_owner(address owner, bool doLock) { | |
4280 assert(doLock || | |
4281 Threads_lock->owned_by_self() || | |
4282 SafepointSynchronize::is_at_safepoint(), | |
4283 "must grab Threads_lock or be at safepoint"); | |
4284 | |
4285 // NULL owner means not locked so we can skip the search | |
4286 if (owner == NULL) return NULL; | |
4287 | |
4288 { | |
4289 MutexLockerEx ml(doLock ? Threads_lock : NULL); | |
4290 ALL_JAVA_THREADS(p) { | |
4291 // first, see if owner is the address of a Java thread | |
4292 if (owner == (address)p) return p; | |
4293 } | |
4294 } | |
8673
5ee250974db9
8007476: assert(the_owner != NULL) failed: Did not find owning Java thread for lock word address
dcubed
parents:
8041
diff
changeset
|
4295 // Cannot assert on lack of success here since this function may be |
5ee250974db9
8007476: assert(the_owner != NULL) failed: Did not find owning Java thread for lock word address
dcubed
parents:
8041
diff
changeset
|
4296 // used by code that is trying to report useful problem information |
5ee250974db9
8007476: assert(the_owner != NULL) failed: Did not find owning Java thread for lock word address
dcubed
parents:
8041
diff
changeset
|
4297 // like deadlock detection. |
0 | 4298 if (UseHeavyMonitors) return NULL; |
4299 | |
4300 // | |
4301 // If we didn't find a matching Java thread and we didn't force use of | |
4302 // heavyweight monitors, then the owner is the stack address of the | |
4303 // Lock Word in the owning Java thread's stack. | |
4304 // | |
4305 JavaThread* the_owner = NULL; | |
4306 { | |
4307 MutexLockerEx ml(doLock ? Threads_lock : NULL); | |
4308 ALL_JAVA_THREADS(q) { | |
702
b9fba36710f2
6699669: Hotspot server leaves synchronized block with monitor in bad state
xlu
parents:
669
diff
changeset
|
4309 if (q->is_lock_owned(owner)) { |
0 | 4310 the_owner = q; |
702
b9fba36710f2
6699669: Hotspot server leaves synchronized block with monitor in bad state
xlu
parents:
669
diff
changeset
|
4311 break; |
0 | 4312 } |
4313 } | |
4314 } | |
8673
5ee250974db9
8007476: assert(the_owner != NULL) failed: Did not find owning Java thread for lock word address
dcubed
parents:
8041
diff
changeset
|
4315 // cannot assert on lack of success here; see above comment |
0 | 4316 return the_owner; |
4317 } | |
4318 | |
4319 // Threads::print_on() is called at safepoint by VM_PrintThreads operation. | |
4320 void Threads::print_on(outputStream* st, bool print_stacks, bool internal_format, bool print_concurrent_locks) { | |
4321 char buf[32]; | |
4322 st->print_cr(os::local_time_string(buf, sizeof(buf))); | |
4323 | |
4324 st->print_cr("Full thread dump %s (%s %s):", | |
4325 Abstract_VM_Version::vm_name(), | |
4326 Abstract_VM_Version::vm_release(), | |
4327 Abstract_VM_Version::vm_info_string() | |
4328 ); | |
4329 st->cr(); | |
4330 | |
8001
db9981fd3124
8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents:
7615
diff
changeset
|
4331 #if INCLUDE_ALL_GCS |
0 | 4332 // Dump concurrent locks |
4333 ConcurrentLocksDump concurrent_locks; | |
4334 if (print_concurrent_locks) { | |
4335 concurrent_locks.dump_at_safepoint(); | |
4336 } | |
8001
db9981fd3124
8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents:
7615
diff
changeset
|
4337 #endif // INCLUDE_ALL_GCS |
0 | 4338 |
4339 ALL_JAVA_THREADS(p) { | |
4340 ResourceMark rm; | |
4341 p->print_on(st); | |
4342 if (print_stacks) { | |
4343 if (internal_format) { | |
4344 p->trace_stack(); | |
4345 } else { | |
4346 p->print_stack_on(st); | |
4347 } | |
4348 } | |
4349 st->cr(); | |
8001
db9981fd3124
8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents:
7615
diff
changeset
|
4350 #if INCLUDE_ALL_GCS |
0 | 4351 if (print_concurrent_locks) { |
4352 concurrent_locks.print_locks_on(p, st); | |
4353 } | |
8001
db9981fd3124
8005915: Unify SERIALGC and INCLUDE_ALTERNATE_GCS
jprovino
parents:
7615
diff
changeset
|
4354 #endif // INCLUDE_ALL_GCS |
0 | 4355 } |
4356 | |
4357 VMThread::vm_thread()->print_on(st); | |
4358 st->cr(); | |
4359 Universe::heap()->print_gc_threads_on(st); | |
4360 WatcherThread* wt = WatcherThread::watcher_thread(); | |
6766 | 4361 if (wt != NULL) { |
4362 wt->print_on(st); | |
4363 st->cr(); | |
4364 } | |
0 | 4365 CompileBroker::print_compiler_threads_on(st); |
4366 st->flush(); | |
4367 } | |
4368 | |
4369 // Threads::print_on_error() is called by fatal error handler. It's possible | |
4370 // that VM is not at safepoint and/or current thread is inside signal handler. | |
4371 // Don't print stack trace, as the stack may not be walkable. Don't allocate | |
4372 // memory (even in resource area), it might deadlock the error handler. | |
4373 void Threads::print_on_error(outputStream* st, Thread* current, char* buf, int buflen) { | |
4374 bool found_current = false; | |
4375 st->print_cr("Java Threads: ( => current thread )"); | |
4376 ALL_JAVA_THREADS(thread) { | |
4377 bool is_current = (current == thread); | |
4378 found_current = found_current || is_current; | |
4379 | |
4380 st->print("%s", is_current ? "=>" : " "); | |
4381 | |
4382 st->print(PTR_FORMAT, thread); | |
4383 st->print(" "); | |
4384 thread->print_on_error(st, buf, buflen); | |
4385 st->cr(); | |
4386 } | |
4387 st->cr(); | |
4388 | |
4389 st->print_cr("Other Threads:"); | |
4390 if (VMThread::vm_thread()) { | |
4391 bool is_current = (current == VMThread::vm_thread()); | |
4392 found_current = found_current || is_current; | |
4393 st->print("%s", current == VMThread::vm_thread() ? "=>" : " "); | |
4394 | |
4395 st->print(PTR_FORMAT, VMThread::vm_thread()); | |
4396 st->print(" "); | |
4397 VMThread::vm_thread()->print_on_error(st, buf, buflen); | |
4398 st->cr(); | |
4399 } | |
4400 WatcherThread* wt = WatcherThread::watcher_thread(); | |
4401 if (wt != NULL) { | |
4402 bool is_current = (current == wt); | |
4403 found_current = found_current || is_current; | |
4404 st->print("%s", is_current ? "=>" : " "); | |
4405 | |
4406 st->print(PTR_FORMAT, wt); | |
4407 st->print(" "); | |
4408 wt->print_on_error(st, buf, buflen); | |
4409 st->cr(); | |
4410 } | |
4411 if (!found_current) { | |
4412 st->cr(); | |
4413 st->print("=>" PTR_FORMAT " (exited) ", current); | |
4414 current->print_on_error(st, buf, buflen); | |
4415 st->cr(); | |
4416 } | |
4417 } | |
4418 | |
1878 | 4419 // Internal SpinLock and Mutex |
4420 // Based on ParkEvent | |
4421 | |
4422 // Ad-hoc mutual exclusion primitives: SpinLock and Mux | |
0 | 4423 // |
1878 | 4424 // We employ SpinLocks _only for low-contention, fixed-length |
4425 // short-duration critical sections where we're concerned | |
4426 // about native mutex_t or HotSpot Mutex:: latency. | |
4427 // The mux construct provides a spin-then-block mutual exclusion | |
4428 // mechanism. | |
4429 // | |
4430 // Testing has shown that contention on the ListLock guarding gFreeList | |
4431 // is common. If we implement ListLock as a simple SpinLock it's common | |
4432 // for the JVM to devolve to yielding with little progress. This is true | |
4433 // despite the fact that the critical sections protected by ListLock are | |
4434 // extremely short. | |
0 | 4435 // |
1878 | 4436 // TODO-FIXME: ListLock should be of type SpinLock. |
4437 // We should make this a 1st-class type, integrated into the lock | |
4438 // hierarchy as leaf-locks. Critically, the SpinLock structure | |
4439 // should have sufficient padding to avoid false-sharing and excessive | |
4440 // cache-coherency traffic. | |
4441 | |
4442 | |
4443 typedef volatile int SpinLockT ; | |
4444 | |
4445 void Thread::SpinAcquire (volatile int * adr, const char * LockName) { | |
4446 if (Atomic::cmpxchg (1, adr, 0) == 0) { | |
4447 return ; // normal fast-path return | |
4448 } | |
4449 | |
4450 // Slow-path : We've encountered contention -- Spin/Yield/Block strategy. | |
4451 TEVENT (SpinAcquire - ctx) ; | |
4452 int ctr = 0 ; | |
4453 int Yields = 0 ; | |
0 | 4454 for (;;) { |
1878 | 4455 while (*adr != 0) { |
4456 ++ctr ; | |
4457 if ((ctr & 0xFFF) == 0 || !os::is_MP()) { | |
4458 if (Yields > 5) { | |
17706
0e6af9b390af
8028280: ParkEvent leak when running modified runThese which only loads classes
dsimms
parents:
13004
diff
changeset
|
4459 os::naked_short_sleep(1); |
1878 | 4460 } else { |
4461 os::NakedYield() ; | |
4462 ++Yields ; | |
4463 } | |
4464 } else { | |
4465 SpinPause() ; | |
0 | 4466 } |
1878 | 4467 } |
4468 if (Atomic::cmpxchg (1, adr, 0) == 0) return ; | |
0 | 4469 } |
4470 } | |
4471 | |
1878 | 4472 void Thread::SpinRelease (volatile int * adr) { |
4473 assert (*adr != 0, "invariant") ; | |
4474 OrderAccess::fence() ; // guarantee at least release consistency. | |
4475 // Roach-motel semantics. | |
4476 // It's safe if subsequent LDs and STs float "up" into the critical section, | |
4477 // but prior LDs and STs within the critical section can't be allowed | |
4478 // to reorder or float past the ST that releases the lock. | |
4479 *adr = 0 ; | |
0 | 4480 } |
4481 | |
1878 | 4482 // muxAcquire and muxRelease: |
4483 // | |
4484 // * muxAcquire and muxRelease support a single-word lock-word construct. | |
4485 // The LSB of the word is set IFF the lock is held. | |
4486 // The remainder of the word points to the head of a singly-linked list | |
4487 // of threads blocked on the lock. | |
4488 // | |
4489 // * The current implementation of muxAcquire-muxRelease uses its own | |
4490 // dedicated Thread._MuxEvent instance. If we're interested in | |
4491 // minimizing the peak number of extant ParkEvent instances then | |
4492 // we could eliminate _MuxEvent and "borrow" _ParkEvent as long | |
4493 // as certain invariants were satisfied. Specifically, care would need | |
4494 // to be taken with regards to consuming unpark() "permits". | |
4495 // A safe rule of thumb is that a thread would never call muxAcquire() | |
4496 // if it's enqueued (cxq, EntryList, WaitList, etc) and will subsequently | |
4497 // park(). Otherwise the _ParkEvent park() operation in muxAcquire() could | |
4498 // consume an unpark() permit intended for monitorenter, for instance. | |
4499 // One way around this would be to widen the restricted-range semaphore | |
4500 // implemented in park(). Another alternative would be to provide | |
4501 // multiple instances of the PlatformEvent() for each thread. One | |
4502 // instance would be dedicated to muxAcquire-muxRelease, for instance. | |
4503 // | |
4504 // * Usage: | |
4505 // -- Only as leaf locks | |
4506 // -- for short-term locking only as muxAcquire does not perform | |
4507 // thread state transitions. | |
4508 // | |
4509 // Alternatives: | |
4510 // * We could implement muxAcquire and muxRelease with MCS or CLH locks | |
4511 // but with parking or spin-then-park instead of pure spinning. | |
4512 // * Use Taura-Oyama-Yonenzawa locks. | |
4513 // * It's possible to construct a 1-0 lock if we encode the lockword as | |
4514 // (List,LockByte). Acquire will CAS the full lockword while Release | |
4515 // will STB 0 into the LockByte. The 1-0 scheme admits stranding, so | |
4516 // acquiring threads use timers (ParkTimed) to detect and recover from | |
4517 // the stranding window. Thread/Node structures must be aligned on 256-byte | |
4518 // boundaries by using placement-new. | |
4519 // * Augment MCS with advisory back-link fields maintained with CAS(). | |
4520 // Pictorially: LockWord -> T1 <-> T2 <-> T3 <-> ... <-> Tn <-> Owner. | |
4521 // The validity of the backlinks must be ratified before we trust the value. | |
4522 // If the backlinks are invalid the exiting thread must back-track through the | |
4523 // the forward links, which are always trustworthy. | |
4524 // * Add a successor indication. The LockWord is currently encoded as | |
4525 // (List, LOCKBIT:1). We could also add a SUCCBIT or an explicit _succ variable | |
4526 // to provide the usual futile-wakeup optimization. | |
4527 // See RTStt for details. | |
4528 // * Consider schedctl.sc_nopreempt to cover the critical section. | |
4529 // | |
4530 | |
4531 | |
4532 typedef volatile intptr_t MutexT ; // Mux Lock-word | |
4533 enum MuxBits { LOCKBIT = 1 } ; | |
4534 | |
4535 void Thread::muxAcquire (volatile intptr_t * Lock, const char * LockName) { | |
4536 intptr_t w = Atomic::cmpxchg_ptr (LOCKBIT, Lock, 0) ; | |
4537 if (w == 0) return ; | |
4538 if ((w & LOCKBIT) == 0 && Atomic::cmpxchg_ptr (w|LOCKBIT, Lock, w) == w) { | |
4539 return ; | |
4540 } | |
4541 | |
4542 TEVENT (muxAcquire - Contention) ; | |
4543 ParkEvent * const Self = Thread::current()->_MuxEvent ; | |
4544 assert ((intptr_t(Self) & LOCKBIT) == 0, "invariant") ; | |
0 | 4545 for (;;) { |
1878 | 4546 int its = (os::is_MP() ? 100 : 0) + 1 ; |
4547 | |
4548 // Optional spin phase: spin-then-park strategy | |
4549 while (--its >= 0) { | |
4550 w = *Lock ; | |
4551 if ((w & LOCKBIT) == 0 && Atomic::cmpxchg_ptr (w|LOCKBIT, Lock, w) == w) { | |
4552 return ; | |
4553 } | |
4554 } | |
4555 | |
4556 Self->reset() ; | |
4557 Self->OnList = intptr_t(Lock) ; | |
4558 // The following fence() isn't _strictly necessary as the subsequent | |
4559 // CAS() both serializes execution and ratifies the fetched *Lock value. | |
4560 OrderAccess::fence(); | |
4561 for (;;) { | |
4562 w = *Lock ; | |
4563 if ((w & LOCKBIT) == 0) { | |
4564 if (Atomic::cmpxchg_ptr (w|LOCKBIT, Lock, w) == w) { | |
4565 Self->OnList = 0 ; // hygiene - allows stronger asserts | |
4566 return ; | |
4567 } | |
4568 continue ; // Interference -- *Lock changed -- Just retry | |
0 | 4569 } |
1878 | 4570 assert (w & LOCKBIT, "invariant") ; |
4571 Self->ListNext = (ParkEvent *) (w & ~LOCKBIT ); | |
4572 if (Atomic::cmpxchg_ptr (intptr_t(Self)|LOCKBIT, Lock, w) == w) break ; | |
4573 } | |
4574 | |
4575 while (Self->OnList != 0) { | |
4576 Self->park() ; | |
4577 } | |
0 | 4578 } |
4579 } | |
4580 | |
1878 | 4581 void Thread::muxAcquireW (volatile intptr_t * Lock, ParkEvent * ev) { |
4582 intptr_t w = Atomic::cmpxchg_ptr (LOCKBIT, Lock, 0) ; | |
4583 if (w == 0) return ; | |
4584 if ((w & LOCKBIT) == 0 && Atomic::cmpxchg_ptr (w|LOCKBIT, Lock, w) == w) { | |
4585 return ; | |
4586 } | |
4587 | |
4588 TEVENT (muxAcquire - Contention) ; | |
4589 ParkEvent * ReleaseAfter = NULL ; | |
4590 if (ev == NULL) { | |
4591 ev = ReleaseAfter = ParkEvent::Allocate (NULL) ; | |
4592 } | |
4593 assert ((intptr_t(ev) & LOCKBIT) == 0, "invariant") ; | |
4594 for (;;) { | |
4595 guarantee (ev->OnList == 0, "invariant") ; | |
4596 int its = (os::is_MP() ? 100 : 0) + 1 ; | |
4597 | |
4598 // Optional spin phase: spin-then-park strategy | |
4599 while (--its >= 0) { | |
4600 w = *Lock ; | |
4601 if ((w & LOCKBIT) == 0 && Atomic::cmpxchg_ptr (w|LOCKBIT, Lock, w) == w) { | |
4602 if (ReleaseAfter != NULL) { | |
4603 ParkEvent::Release (ReleaseAfter) ; | |
4604 } | |
4605 return ; | |
4606 } | |
4607 } | |
4608 | |
4609 ev->reset() ; | |
4610 ev->OnList = intptr_t(Lock) ; | |
4611 // The following fence() isn't _strictly necessary as the subsequent | |
4612 // CAS() both serializes execution and ratifies the fetched *Lock value. | |
4613 OrderAccess::fence(); | |
4614 for (;;) { | |
4615 w = *Lock ; | |
4616 if ((w & LOCKBIT) == 0) { | |
4617 if (Atomic::cmpxchg_ptr (w|LOCKBIT, Lock, w) == w) { | |
4618 ev->OnList = 0 ; | |
4619 // We call ::Release while holding the outer lock, thus | |
4620 // artificially lengthening the critical section. | |
4621 // Consider deferring the ::Release() until the subsequent unlock(), | |
4622 // after we've dropped the outer lock. | |
4623 if (ReleaseAfter != NULL) { | |
4624 ParkEvent::Release (ReleaseAfter) ; | |
4625 } | |
4626 return ; | |
4627 } | |
4628 continue ; // Interference -- *Lock changed -- Just retry | |
4629 } | |
4630 assert (w & LOCKBIT, "invariant") ; | |
4631 ev->ListNext = (ParkEvent *) (w & ~LOCKBIT ); | |
4632 if (Atomic::cmpxchg_ptr (intptr_t(ev)|LOCKBIT, Lock, w) == w) break ; | |
4633 } | |
4634 | |
4635 while (ev->OnList != 0) { | |
4636 ev->park() ; | |
4637 } | |
4638 } | |
4639 } | |
4640 | |
4641 // Release() must extract a successor from the list and then wake that thread. | |
4642 // It can "pop" the front of the list or use a detach-modify-reattach (DMR) scheme | |
4643 // similar to that used by ParkEvent::Allocate() and ::Release(). DMR-based | |
4644 // Release() would : | |
4645 // (A) CAS() or swap() null to *Lock, releasing the lock and detaching the list. | |
4646 // (B) Extract a successor from the private list "in-hand" | |
4647 // (C) attempt to CAS() the residual back into *Lock over null. | |
4648 // If there were any newly arrived threads and the CAS() would fail. | |
4649 // In that case Release() would detach the RATs, re-merge the list in-hand | |
4650 // with the RATs and repeat as needed. Alternately, Release() might | |
4651 // detach and extract a successor, but then pass the residual list to the wakee. | |
4652 // The wakee would be responsible for reattaching and remerging before it | |
4653 // competed for the lock. | |
4654 // | |
4655 // Both "pop" and DMR are immune from ABA corruption -- there can be | |
4656 // multiple concurrent pushers, but only one popper or detacher. | |
4657 // This implementation pops from the head of the list. This is unfair, | |
4658 // but tends to provide excellent throughput as hot threads remain hot. | |
4659 // (We wake recently run threads first). | |
4660 | |
4661 void Thread::muxRelease (volatile intptr_t * Lock) { | |
4662 for (;;) { | |
4663 const intptr_t w = Atomic::cmpxchg_ptr (0, Lock, LOCKBIT) ; | |
4664 assert (w & LOCKBIT, "invariant") ; | |
4665 if (w == LOCKBIT) return ; | |
4666 ParkEvent * List = (ParkEvent *) (w & ~LOCKBIT) ; | |
4667 assert (List != NULL, "invariant") ; | |
4668 assert (List->OnList == intptr_t(Lock), "invariant") ; | |
4669 ParkEvent * nxt = List->ListNext ; | |
4670 | |
4671 // The following CAS() releases the lock and pops the head element. | |
4672 if (Atomic::cmpxchg_ptr (intptr_t(nxt), Lock, w) != w) { | |
4673 continue ; | |
4674 } | |
4675 List->OnList = 0 ; | |
4676 OrderAccess::fence() ; | |
4677 List->unpark () ; | |
4678 return ; | |
4679 } | |
4680 } | |
4681 | |
4682 | |
0 | 4683 void Threads::verify() { |
4684 ALL_JAVA_THREADS(p) { | |
4685 p->verify(); | |
4686 } | |
4687 VMThread* thread = VMThread::vm_thread(); | |
4688 if (thread != NULL) thread->verify(); | |
4689 } |